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16 Commits

Author SHA1 Message Date
openharmony_ci
c70295cc30 !1096 xts用例
Merge pull request !1096 from 乔克叔叔/wxliu
2023-08-31 09:10:48 +00:00
liuwenxin
c19dc1bc94 fix:xts用例
Signed-off-by: liuwenxin <liuwenxin11@huawei.com>
Change-Id: I2d3f856eb94e5ced0bc5a9c0211f10f453a4ad03
2023-08-31 16:49:50 +08:00
openharmony_ci
d2bf535696 !1091 支持可配置是否生成asm文件
Merge pull request !1091 from wangchen/0817_m
2023-08-18 01:52:50 +00:00
wangchen
bda25829af Fix: 支持可配置是否生成asm文件
Close #I7U2V4
Signed-off-by: wangchen <wangchen240@huawei.com>
2023-08-17 21:41:43 +08:00
openharmony_ci
a1e215f16a !1090 liteos_m内核xts用例补齐cmsis中task剩余
Merge pull request !1090 from zwx1232718/master
2023-08-17 02:14:08 +00:00
zwx1232718
5e36b8b599 test:xts用例,task补充
Signed-off-by: zwx1232718 <zhenghui23@huawei.com>
2023-08-17 09:06:40 +08:00
openharmony_ci
954aa6fb70 !1087 liteos_m内核xts用例补齐cmsis剩余task部分
Merge pull request !1087 from zwx1232718/master
2023-08-16 01:18:57 +00:00
zwx1232718
64a73724b3 test:xts用例补齐,cmsis中task部分
Signed-off-by: zwx1232718 <zhenghui23@huawei.com>
2023-08-15 10:40:53 +08:00
openharmony_ci
2a49ac7323 !1084 readme翻译问题修改
Merge pull request !1084 from wangchen/0804_m
2023-08-14 13:38:45 +00:00
openharmony_ci
cde26d8d68 !1080 Kconfig清理冗余代码
Merge pull request !1080 from 乔克叔叔/master
2023-08-11 02:49:30 +00:00
openharmony_ci
4140bd673e !1081 liteos_m内核xts用例补齐部分cmsis
Merge pull request !1081 from zwx1232718/master
2023-08-09 06:58:11 +00:00
openharmony_ci
2b81e524a1 !1085 Fix : 内核告警清理
Merge pull request !1085 from yinjiaming/fix
2023-08-09 02:14:05 +00:00
zwx1232718
1dae9259ef test:xts用例补齐,部分cmsis
Signed-off-by: zwx1232718 <zhenghui23@huawei.com>
2023-08-09 09:58:58 +08:00
yinjiaming
3ce50a610c fix:内核代码告警清理
内核代码经工具检测有告警,现予清理

Signed-off-by: yinjiaming <yinjiaming@huawei.com>
Change-Id: I3bf6c421296dfccd9c78cc6af47dcb1879da5cea
2023-08-08 16:22:32 +08:00
wangchen
cf980647d6 Fix: readme翻译问题修改
Close #I7QAKU
Signed-off-by: wangchen <wangchen240@huawei.com>
2023-08-04 10:28:10 +08:00
liuwenxin
f42c36ac8e fix:kconfig清理冗余代码
Signed-off-by: liuwenxin <liuwenxin11@huawei.com>
Change-Id: I45b8185b87b9c6cb03a470c9969239fdda5f6b4d
2023-07-29 15:57:26 +08:00
26 changed files with 5228 additions and 227 deletions

View File

@@ -44,6 +44,10 @@ if (defined(LOSCFG_COMPILER_ICCARM)) {
}
}
declare_args() {
liteos_build_asm = true
}
config("arch_config") {
cflags = arch_config_cflags
asmflags = arch_config_asmflags
@@ -215,4 +219,7 @@ build_ext_component("build_kernel_image") {
exec_path = rebase_path(root_out_dir)
command = toochain_config_command
if (liteos_build_asm) {
command += toochain_asm_command
}
}

170
Kconfig
View File

@@ -39,19 +39,9 @@ choice
config COMPILER_GCC
bool "GCC"
config CROSS_COMPILE
string "GCC cross-compile toolchain prefix"
depends on COMPILER_GCC
default "arm-none-eabi-" if ARCH_ARM_AARCH32
config COMPILER_CLANG_LLVM
bool "Clang"
config LLVM_TARGET
string "Clang LLVM target"
depends on COMPILER_CLANG_LLVM
default "arm-liteos-ohos" if ARCH_ARM_AARCH32
config COMPILER_ICCARM
bool "ICCARM"
@@ -96,15 +86,6 @@ config PLATFORM
string
default "virt" if PLATFORM_QEMU_ARM_VIRT_CM7 || PLATFORM_QEMU_ARM_VIRT_CM4 || PLATFORM_QEMU_ARM_VIRT_CM55 || PRODUCT_QEMU_RISCV32_VIRT || PLATFORM_QEMU_CSKY_SMARTL || PLATFORM_QEMU_XTENSA_ESP32
config PRODUCT_NAME
string
default "arm_virt" if PRODUCT_QEMU_ARM
default "arm_mps2_an386" if PRODUCT_QEMU_ARM_MPS2_AN386
default "arm_mps3_an547" if PRODUCT_QEMU_ARM_MPS3_AN547
default "riscv32_virt" if PRODUCT_QEMU_RISCV32_VIRT
default "csky_smartl_e802" if PRODUCT_QEMU_CSKY_SMARTL_E802
default "xtensa_esp32" if PRODUCT_QEMU_XTENSA_ESP32
config DEVICE_COMPANY
string
default "qemu" if PLATFORM_QEMU_ARM_VIRT_CM7 || PLATFORM_QEMU_ARM_VIRT_CM4 || PLATFORM_QEMU_ARM_VIRT_CM55 || PRODUCT_QEMU_RISCV32_VIRT || PLATFORM_QEMU_CSKY_SMARTL || PLATFORM_QEMU_XTENSA_ESP32
@@ -163,24 +144,9 @@ choice
help
Select your target board.
config PRODUCT_QEMU_ARM
bool "arm_virt" if PLATFORM_QEMU_ARM_VIRT_CM7
config PRODUCT_QEMU_ARM_MPS2_AN386
bool "arm_mps2_an386" if PLATFORM_QEMU_ARM_VIRT_CM4
config PRODUCT_QEMU_ARM_MPS3_AN547
bool "arm_mps3_an547" if PLATFORM_QEMU_ARM_VIRT_CM55
config PRODUCT_QEMU_RISCV32_VIRT
bool "riscv32_virt" if PLATFORM_QEMU_RISCV32_VIRT
config PRODUCT_QEMU_CSKY_SMARTL_E802
bool "csky_smartl_e802" if PLATFORM_QEMU_CSKY_SMARTL
config PRODUCT_QEMU_XTENSA_ESP32
bool "xtensa_esp32" if PLATFORM_QEMU_XTENSA_ESP32
endchoice
@@ -219,12 +185,6 @@ endchoice
orsource "../../device/soc/*/Kconfig.liteos_m.soc"
config QUICK_START
bool "Enable QUICK_START"
default n
depends on DRIVERS && FS_VFS
help
Answer Y to enable LiteOS support quick start.
endmenu
######################### config options of kernel #####################
@@ -343,21 +303,6 @@ config KERNEL_PM_IDLE
Configuration item for low power frame tailoring.
If you wish to build LiteOS with support for power management idle.
config KERNEL_PM_TASK_PTIORITY
int "Power Management Task Priority"
default 1
range 1 31
depends on KERNEL_PM
help
Configuration item for priority of low-power task.
config KERNEL_PM_TASK_STACKSIZE
int "Power Management Task Stack Size"
default 1024
depends on KERNEL_PM
help
Configuration item for stack size of low-power task.
config KERNEL_PM_DEBUG
bool "Power Management Debug"
default n
@@ -393,17 +338,6 @@ source "components/lms/Kconfig"
endmenu
######################### config options of lib ########################
menu "Lib"
config LIB_LIBC
bool "Enable Libc"
default y
help
Answer Y to enable libc for full code.
endmenu
######################### config options of compatibility ##############
menu "Compat"
@@ -436,43 +370,6 @@ endmenu
######################## config options of debug ########################
menu "Debug"
config GDB
bool "Enable gdb functions"
default n
help
Answer Y to enable gdb functions.
config PLATFORM_ADAPT
bool "Enable Os_adapt"
default y
help
Answer Y to add os_adapt.c to LiteOS.
config ENABLE_OOM_LOOP_TASK
bool "Enable Oom loop task"
default n
depends on KERNEL_VM
help
Answer Y to enable oom loop kthread to check system out of memory.
config DO_ALIGN
bool "Enable do align for hi3518e"
default y
depends on PLATFORM_HI3518EV200
help
Answer Y to enable do align for hi3518e.
config ENABLE_MAGICKEY
bool "Enable MAGIC KEY"
default y
help
Answer Y to enable LiteOS Magic key.
ctrl + r : Magic key check switch;
ctrl + z : Show all magic op key;
ctrl + t : Show task information;
ctrl + p : System panic;
ctrl + e : Check system memory pool.
config THUMB
bool "Enable Thumb"
@@ -481,20 +378,6 @@ config THUMB
help
Answer Y to build thumb version. This will make LiteOS smaller.
config PLATFORM_DVFS
bool "Enable Dvfs"
default n
depends on COMPAT_LINUXKPI
help
Answer Y to enable LiteOS support dynamic voltage and frequency scaling feature for
low power consumption.
config SAVE_EXCINFO
bool "Enable Saving Exception Information"
default n
help
Answer Y to enable LiteOS support saving exception information to storage medium.
config DEBUG_VERSION
bool "Enable a Debug Version"
default y
@@ -514,13 +397,6 @@ config DEBUG_KERNEL
It also means you want to get queue, mutex, semaphore, memory debug information.
That means you want a opposite behaviour compared to release version.
config DEBUG_QUEUE
bool "Enable Queue Debugging"
default n
depends on DEBUG_KERNEL
help
Answer Y to enable debug queue.
config MUTEX_CREATE_TRACE
bool "Enable Mutex Trace Debugging"
default n
@@ -529,20 +405,6 @@ config MUTEX_CREATE_TRACE
help
Answer Y to enable debug mutex trace.
config DEBUG_DEADLOCK
bool "Enable Mutex Deadlock Debugging"
default n
depends on DEBUG_KERNEL
help
Answer Y to enable debug mutex deadlock.
config DEBUG_SEMAPHORE
bool "Enable Semaphore Debugging"
default n
depends on DEBUG_KERNEL
help
Answer Y to enable debug semaphore.
config NET_LWIP_SACK_TFTP
bool "Enable Tftp"
default y
@@ -557,18 +419,6 @@ config DEBUG_HOOK
help
Enable the kernel hook framework to support customized trace information capture.
config SCHED_DEBUG
bool "Enable sched debug Feature"
default n
depends on DEBUG_VERSION
help
If you wish to build LiteOS with support for sched debug.
config USER_INIT_DEBUG
bool "Enable user init Debug"
default n
depends on DEBUG_VERSION
config SHELL_CMD_DEBUG
bool "Enable shell cmd Debug"
default n
@@ -581,13 +431,6 @@ config DEBUG_TOOLS
help
Answer Y to enable LiteOS debug tools, include stackdump, hwidump, tasktrack.
config USB_DEBUG
bool "Enable USB Debug"
default n
depends on SHELL && DRIVERS_USB && DEBUG_VERSION
help
Answer Y to enable LiteOS support usb debug.
use shell command to open the specified debug level print.
config MEM_DEBUG
bool "Enable MEM Debug"
default n
@@ -611,13 +454,6 @@ config MEM_WATERLINE
default n
depends on DEBUG_VERSION && MEM_DEBUG
config VM_OVERLAP_CHECK
bool "Enable VM overlap check or not"
default n
depends on DEBUG_VERSION && MEM_DEBUG
help
Answer Y to enable vm overlap check.
config TASK_MEM_USED
bool "Enable show task mem used or not"
default n
@@ -643,12 +479,6 @@ config SECURE_HEAP_SIZE
int "TrustZone Heap Size (bytes)"
default 2048
depends on SECURE_TRUSTZONE
config SECURE_STACK_DEFAULT_SIZE
int "TrustZone Stack Size (bytes)"
default 512
depends on SECURE_TRUSTZONE
help
The secure stack must be allocated before the task calls non-secure functions.
config SECURE
bool "Enable Security"
default n

View File

@@ -35,7 +35,7 @@ The directory structure is as follows. For more details, see [arch_spec.md](arch
│ ├── include # APIs exposed externally
│ ├── risc-v # Code of the risc-v architecture
│ │ ├── nuclei # Code of the nuclei system technology risc-v architecture
│ │ └── riscv32 # Code of the risc-v architecture
│ │ └── riscv32 # Code of the risc-v official common architecture
│ └── xtensa # Code of the xtensa architecture
│ └── lx6 # Code of the lx6 xtensa architecture
├── components # Optional components

View File

@@ -24,27 +24,6 @@ config ARCH_FPU_DISABLE
help
This option will bypass floating procedure in system.
config ARCH_SECURE_MONITOR_MODE
bool "Run On Secure Monitor Mode"
default n
depends on ARCH_ARM_AARCH64
help
This option will make the system run on EL3.
config ARCH_INTERRUPT_PREEMPTION
bool "Enable Interrupt Preemption"
default n
depends on ARCH_ARM_AARCH64
help
This option will support high priority interrupt preemption.
config IRQ_USE_STANDALONE_STACK
bool "Use Interrupt Stack"
default y
depends on ARCH_ARM_AARCH64 || ARCH_ARM_AARCH32
help
This option will support using standalone interrupt stack.
config ARCH_UNALIGNED_EXC
bool "Enable Unaligned Exception"
default y

View File

@@ -31,11 +31,4 @@ config LMS_CHECK_STRICT
default n
depends on KERNEL_LMS
help
Select y to enable byte-by-byte check in lms
config LMS_LIBC_FULL_CHECK
bool "Enable libc all function do lms check"
default n
depends on KERNEL_LMS
help
Select y to enable libc full check
Select y to enable byte-by-byte check in Lms

View File

@@ -162,7 +162,8 @@ UINT32 LOS_LmsCheckPoolAdd(const VOID *pool, UINT32 size)
lmsPoolNode->shadowStart = (UINTPTR)poolAddr + realSize;
lmsPoolNode->shadowSize = poolAddr + size - lmsPoolNode->shadowStart;
/* init shadow value */
(VOID)memset_s((VOID *)lmsPoolNode->shadowStart, lmsPoolNode->shadowSize, LMS_SHADOW_AFTERFREE_U8, lmsPoolNode->shadowSize);
(VOID)memset_s((VOID *)lmsPoolNode->shadowStart, lmsPoolNode->shadowSize, LMS_SHADOW_AFTERFREE_U8,
lmsPoolNode->shadowSize);
LOS_ListAdd(&g_lmsCheckPoolList, &(lmsPoolNode->node));

View File

@@ -147,7 +147,6 @@ STATIC BOOL OsPmTickTimerStop(LosPmCB *pm)
realSleepTime = expireTime - currTime;
sleepCycle = OS_SYS_CYCLE_TO_NS(realSleepTime, g_sysClock);
sleepCycle = OS_SYS_NS_TO_CYCLE(sleepCycle, tickTimer->freq);
if (sleepCycle == 0) {
pm->sysMode = LOS_SYS_NORMAL_SLEEP;
return FALSE;

View File

@@ -24,18 +24,4 @@ config SHELL_STACK_SIZE
default 4096
depends on SHELL
config SHELL_LK
bool "Enable Shell lk"
default y
depends on DEBUG_VERSION && SHELL
help
Answer Y to enable LiteOS support shell lk.
config SHELL_DMESG
bool "Enable Shell dmesg"
default n
depends on DEBUG_VERSION && SHELL && SHELL_CMD_DEBUG
help
Answer Y to enable LiteOS support shell dmesg.
endmenu

View File

@@ -72,7 +72,4 @@ config TRACE_CONTROL_VIA_SHELL
config TRACE_CONTROL_AGENT
bool "Via Trace Agent Task"
config TRACE_NO_CONTROL
bool "No Control"
endchoice

View File

@@ -206,5 +206,6 @@ toochain_config_objdump = "${compile_prefix}objdump$toolchain_cmd_suffix"
toochain_config_command =
"$toochain_config_objcopy -O binary $liteos_name $liteos_name.bin"
toochain_config_command += " && sh -c '$toochain_config_objdump -t $liteos_name | sort >$liteos_name.sym.sorted'"
toochain_config_command +=
toochain_asm_command =
" && sh -c '$toochain_config_objdump -d $liteos_name >$liteos_name.asm'"

View File

@@ -149,4 +149,5 @@ toochain_config_objdump = "${compile_prefix}ielfdumparm$toolchain_cmd_suffix"
toochain_config_command =
"$toochain_config_objcopy --bin --verbose $liteos_name $liteos_name.bin"
toochain_config_command += " && sh -c '$toochain_config_objdump --source --all $liteos_name -o $liteos_name.asm'"
toochain_asm_command = " && sh -c '$toochain_config_objdump --source --all $liteos_name -o $liteos_name.asm'"

View File

@@ -85,7 +85,7 @@
#define ICUNIT_GOTO_WITHIN_EQUAL(param, value1, value2, retcode, label) \
do { \
if ((param) < (value1) || (param) > (value2)) { \
ICunitSaveErr(__LINE__, (iiUINT32)retcode); \
ICunitSaveErr(__LINE__, (iiUINT32)(retcode)); \
goto label; \
} \
} while (0)

View File

@@ -49,7 +49,7 @@ static VOID *PthreadF01(VOID *argument)
g_testCount = 2; // 2, Init test count value.
EXIT1:
EXIT1:
return NULL;
EXIT2:
g_testCount = 0;

View File

@@ -50,7 +50,7 @@ static UINT32 Testcase(VOID)
ICUNIT_GOTO_EQUAL(ret, 0, ret, EXIT);
ret = mq_close(mqdes);
ICUNIT_GOTO_EQUAL(ret, 0, ret, EXIT2);
ICUNIT_GOTO_EQUAL(ret, 0, ret, EXIT2);
ret = mq_unlink(mqname);
ICUNIT_GOTO_EQUAL(ret, 0, ret, EXIT1);

View File

@@ -135,8 +135,8 @@ static char *TmToStr(const struct tm *timePtr, char *timeStr, unsigned len)
if (timePtr == NULL || timeStr == NULL) {
return "";
}
sprintf_s(timeStr, len, "%ld/%d/%d %02d:%02d:%02d WEEK(%d)", timePtr->tm_year + TM_BASE_YEAR, timePtr->tm_mon + 1,
timePtr->tm_mday, timePtr->tm_hour, timePtr->tm_min, timePtr->tm_sec, timePtr->tm_wday);
(VOID)sprintf_s(timeStr, len, "%ld/%d/%d %02d:%02d:%02d WEEK(%d)", timePtr->tm_year + TM_BASE_YEAR,
timePtr->tm_mon + 1, timePtr->tm_mday, timePtr->tm_hour, timePtr->tm_min, timePtr->tm_sec, timePtr->tm_wday);
return timeStr;
}

View File

@@ -30,6 +30,12 @@ import("//kernel/liteos_m/liteos.gni")
static_library("cmsis_test") {
sources = [
"cmsis_event_func_test.c",
"cmsis_msg_func_test.c",
"cmsis_mutex_func_test.c",
"cmsis_sem_func_test.c",
"cmsis_task_func_test.c",
"cmsis_task_pri_func_test.c",
"cmsis_timer_func_test.c",
"xts_cmsis.c",
]

View File

@@ -0,0 +1,364 @@
/*
* Copyright (c) 2023-2023 Huawei Device Co., Ltd. All rights reserved.
*
* Redistribution and use in source and binary forms, with or without modification,
* are permitted provided that the following conditions are met:
*
* 1. Redistributions of source code must retain the above copyright notice, this list of
* conditions and the following disclaimer.
*
* 2. Redistributions in binary form must reproduce the above copyright notice, this list
* of conditions and the following disclaimer in the documentation and/or other materials
* provided with the distribution.
*
* 3. Neither the name of the copyright holder nor the names of its contributors may be used
* to endorse or promote products derived from this software without specific prior written
* permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
* THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#include "xts_cmsis.h"
osEventFlagsId_t g_eventId;
UINT16 g_cmsisTestEventCount;
LITE_TEST_SUIT(Cmsis, Cmsisevent, CmsisEventFuncTestSuite);
static BOOL CmsisEventFuncTestSuiteSetUp(void)
{
return TRUE;
}
static BOOL CmsisEventFuncTestSuiteTearDown(void)
{
return TRUE;
}
static void CmsisEventFlagsWaitFunc001(void const *argument)
{
(void)argument;
g_cmsisTestEventCount++;
UINT32 ret = osEventFlagsWait(g_eventId, EVENT_MASK_HEX_11, (osFlagsWaitAll | osFlagsNoClear), osWaitForever);
ICUNIT_ASSERT_EQUAL_VOID(ret, EVENT_MASK_HEX_11, ret);
g_cmsisTestEventCount++;
osThreadExit();
}
static void CmsisEventFlagsSetFunc002(void const *argument)
{
(void)argument;
UINT32 ret;
g_cmsisTestEventCount++;
ret = osEventFlagsWait(g_eventId, EVENT_MASK_HEX_11, (osFlagsWaitAll | osFlagsNoClear), TIMEOUT_NUM_3);
ICUNIT_ASSERT_EQUAL_VOID(ret, osErrorTimeout, ret);
g_cmsisTestEventCount++;
ret = osEventFlagsWait(g_eventId, EVENT_MASK_HEX_4, (osFlagsWaitAll | osFlagsNoClear), osWaitForever);
ICUNIT_ASSERT_EQUAL_VOID(ret, TESTCOUNT_NUM_4, ret);
g_cmsisTestEventCount++;
osThreadExit();
}
static void CmsisEventFlagsClearFunc001(void const *argument)
{
(void)argument;
g_cmsisTestEventCount++;
UINT32 ret = osEventFlagsWait(g_eventId, EVENT_MASK_HEX_1, osFlagsWaitAll, osWaitForever);
ICUNIT_ASSERT_EQUAL_VOID(ret, EVENT_MASK_HEX_1, ret);
g_cmsisTestEventCount++;
osThreadExit();
}
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_0100
* @tc.name : event operation for creat
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsNew001, Function | MediumTest | Level1)
{
g_eventId = osEventFlagsNew(NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_eventId, NULL, g_eventId);
(void)osEventFlagsDelete(g_eventId);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_0200
* @tc.name : event operation for delete
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsDelete001, Function | MediumTest | Level1)
{
UINT32 ret;
g_eventId = osEventFlagsNew(NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_eventId, NULL, g_eventId);
ret = osEventFlagsDelete(g_eventId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_0300
* @tc.name : event delete operation with EventFlagsId = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsDelete002, Function | MediumTest | Level1)
{
UINT32 ret = osEventFlagsDelete(NULL);
ICUNIT_ASSERT_EQUAL(ret, osErrorParameter, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_0400
* @tc.name : event operation for flags set
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsSet001, Function | MediumTest | Level1)
{
UINT32 ret;
g_eventId = osEventFlagsNew(NULL);
ret = osEventFlagsSet(g_eventId, EVENT_MASK_HEX_10);
ICUNIT_ASSERT_EQUAL(ret, EVENT_MASK_HEX_10, ret);
ret = osEventFlagsDelete(g_eventId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_0500
* @tc.name : event reliability test for flags set
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsSet002, Function | MediumTest | Level1)
{
UINT32 ret;
osThreadId_t id;
osStatus_t status;
osThreadAttr_t attr;
attr.name = "test";
attr.attr_bits = 0U;
attr.cb_mem = NULL;
attr.cb_size = 0U;
attr.stack_mem = NULL;
attr.stack_size = TEST_TASK_STACK_SIZE;
attr.priority = osPriorityAboveNormal;
g_cmsisTestEventCount = 0;
g_eventId = osEventFlagsNew(NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_eventId, NULL, g_eventId);
id = osThreadNew((osThreadFunc_t)CmsisEventFlagsSetFunc002, NULL, &attr);
ICUNIT_ASSERT_NOT_EQUAL(id, NULL, id);
ICUNIT_ASSERT_EQUAL(g_cmsisTestEventCount, EVENT_MASK_HEX_1, g_cmsisTestEventCount);
g_cmsisTestEventCount++;
ret = osEventFlagsSet(g_eventId, EVENT_MASK_HEX_2);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
ICUNIT_ASSERT_EQUAL(g_cmsisTestEventCount, TESTCOUNT_NUM_3, g_cmsisTestEventCount);
g_cmsisTestEventCount++;
ret = osEventFlagsSet(g_eventId, EVENT_MASK_HEX_11);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
ICUNIT_ASSERT_EQUAL(g_cmsisTestEventCount, TESTCOUNT_NUM_4, g_cmsisTestEventCount);
ret = osEventFlagsSet(g_eventId, EVENT_MASK_HEX_4);
ICUNIT_ASSERT_EQUAL(g_cmsisTestEventCount, TESTCOUNT_NUM_5, g_cmsisTestEventCount);
ret = osEventFlagsDelete(g_eventId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_0600
* @tc.name : event flags set operation with EventFlagsId = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsSet003, Function | MediumTest | Level1)
{
UINT32 ret = osEventFlagsSet(NULL, EVENT_MASK_HEX_10);
ICUNIT_ASSERT_EQUAL(ret, osFlagsErrorParameter, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_0700
* @tc.name : event operation for wait
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsWait001, Function | MediumTest | Level1)
{
UINT32 ret;
osThreadId_t id;
osThreadAttr_t attr;
attr.name = "test";
attr.attr_bits = 0U;
attr.cb_mem = NULL;
attr.cb_size = 0U;
attr.stack_mem = NULL;
attr.stack_size = TEST_TASK_STACK_SIZE;
attr.priority = osPriorityAboveNormal;
g_cmsisTestEventCount = 0;
g_eventId = osEventFlagsNew(NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_eventId, NULL, g_eventId);
id = osThreadNew((osThreadFunc_t)CmsisEventFlagsWaitFunc001, NULL, &attr);
ICUNIT_ASSERT_NOT_EQUAL(id, NULL, id);
ret = osEventFlagsSet(g_eventId, EVENT_MASK_HEX_10);
ICUNIT_ASSERT_EQUAL(ret, EVENT_MASK_HEX_10, ret);
ICUNIT_ASSERT_EQUAL(g_cmsisTestEventCount, EVENT_MASK_HEX_1, g_cmsisTestEventCount);
ret = osEventFlagsSet(g_eventId, EVENT_MASK_HEX_1);
ICUNIT_ASSERT_EQUAL(ret, EVENT_MASK_HEX_11, ret);
ICUNIT_ASSERT_EQUAL(g_cmsisTestEventCount, TESTCOUNT_NUM_2, g_cmsisTestEventCount);
ret = osEventFlagsDelete(g_eventId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_0800
* @tc.name : event operation for invalid option
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsWait002, Function | MediumTest | Level1)
{
UINT32 ret;
g_eventId = osEventFlagsNew(NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_eventId, NULL, g_eventId);
ret = osEventFlagsWait(g_eventId, EVENT_MASK_HEX_11, INVALID_FLAG_OPTION, osWaitForever);
ICUNIT_ASSERT_EQUAL(ret, osFlagsErrorParameter, ret);
ret = osEventFlagsDelete(g_eventId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_0900
* @tc.name : event wait operation with EventFlagsId = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsWait003, Function | MediumTest | Level1)
{
UINT32 ret = osEventFlagsWait(NULL, EVENT_MASK_HEX_11, (osFlagsWaitAll | osFlagsNoClear), osWaitForever);
ICUNIT_ASSERT_EQUAL(ret, osFlagsErrorParameter, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_1000
* @tc.name : event operation for flags get
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsGet001, Function | MediumTest | Level1)
{
UINT32 ret;
g_eventId = osEventFlagsNew(NULL);
ret = osEventFlagsSet(g_eventId, EVENT_MASK_HEX_10);
ICUNIT_ASSERT_EQUAL(ret, EVENT_MASK_HEX_10, ret);
ret = osEventFlagsGet(g_eventId);
ICUNIT_ASSERT_EQUAL(ret, EVENT_MASK_HEX_10, ret);
ret = osEventFlagsDelete(g_eventId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_1100
* @tc.name : event flags get operation with EventFlagsId = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsGet002, Function | MediumTest | Level1)
{
UINT32 ret = osEventFlagsGet(NULL);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_1200
* @tc.name : event operation for flags clear
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsClear001, Function | MediumTest | Level1)
{
UINT32 ret;
osThreadId_t id;
osThreadAttr_t attr;
attr.name = "test";
attr.attr_bits = 0U;
attr.cb_mem = NULL;
attr.cb_size = 0U;
attr.stack_mem = NULL;
attr.stack_size = TEST_TASK_STACK_SIZE;
attr.priority = osPriorityAboveNormal;
g_cmsisTestEventCount = 0;
g_eventId = osEventFlagsNew(NULL);
id = osThreadNew((osThreadFunc_t)CmsisEventFlagsClearFunc001, NULL, &attr);
ICUNIT_ASSERT_NOT_EQUAL(id, NULL, id);
ret = osEventFlagsSet(g_eventId, EVENT_MASK_HEX_10);
ICUNIT_ASSERT_EQUAL(ret, EVENT_MASK_HEX_10, ret);
ICUNIT_ASSERT_EQUAL(g_cmsisTestEventCount, EVENT_MASK_HEX_1, g_cmsisTestEventCount);
ret = osEventFlagsClear(g_eventId, 0xffff);
ICUNIT_ASSERT_EQUAL(ret, EVENT_MASK_HEX_10, ret);
ret = osEventFlagsGet(g_eventId);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
ret = osEventFlagsSet(g_eventId, EVENT_MASK_HEX_1);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
ICUNIT_ASSERT_EQUAL(g_cmsisTestEventCount, TESTCOUNT_NUM_2, g_cmsisTestEventCount);
ret = osEventFlagsDelete(g_eventId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_EVENT_OPERATION_1300
* @tc.name : event flags clear operation with EventFlagsId = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisEventFuncTestSuite, testOsEventFlagsClear002, Function | MediumTest | Level1)
{
UINT32 ret = osEventFlagsClear(NULL, 0xffff);
ICUNIT_ASSERT_EQUAL(ret, osFlagsErrorParameter, ret);
return 0;
};
RUN_TEST_SUITE(CmsisEventFuncTestSuite);
void CmsisEventFuncTest(void)
{
RUN_ONE_TESTCASE(testOsEventFlagsNew001);
RUN_ONE_TESTCASE(testOsEventFlagsDelete001);
RUN_ONE_TESTCASE(testOsEventFlagsDelete002);
RUN_ONE_TESTCASE(testOsEventFlagsSet001);
RUN_ONE_TESTCASE(testOsEventFlagsSet002);
RUN_ONE_TESTCASE(testOsEventFlagsSet003);
RUN_ONE_TESTCASE(testOsEventFlagsWait001);
RUN_ONE_TESTCASE(testOsEventFlagsWait002);
RUN_ONE_TESTCASE(testOsEventFlagsWait003);
RUN_ONE_TESTCASE(testOsEventFlagsGet001);
RUN_ONE_TESTCASE(testOsEventFlagsGet002);
RUN_ONE_TESTCASE(testOsEventFlagsClear001);
RUN_ONE_TESTCASE(testOsEventFlagsClear002);
}

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@@ -0,0 +1,419 @@
/*
* Copyright (c) 2023-2023 Huawei Device Co., Ltd. All rights reserved.
*
* Redistribution and use in source and binary forms, with or without modification,
* are permitted provided that the following conditions are met:
*
* 1. Redistributions of source code must retain the above copyright notice, this list of
* conditions and the following disclaimer.
*
* 2. Redistributions in binary form must reproduce the above copyright notice, this list
* of conditions and the following disclaimer in the documentation and/or other materials
* provided with the distribution.
*
* 3. Neither the name of the copyright holder nor the names of its contributors may be used
* to endorse or promote products derived from this software without specific prior written
* permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
* THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#include "xts_cmsis.h"
osMessageQueueId_t g_cmsisMqId;
static char *g_cmsisMessageInfo[] = {"msg1", "msg2", "msg3", "msg4", "msg5", "msg6", "msg7", "msg8"};
LITE_TEST_SUIT(Cmsis, Cmsismsg, CmsisMsgFuncTestSuite);
static BOOL CmsisMsgFuncTestSuiteSetUp(void)
{
return TRUE;
}
static BOOL CmsisMsgFuncTestSuiteTearDown(void)
{
return TRUE;
}
static void CmsisMessageQueueGetFunc001(void const *argument)
{
(void)argument;
osStatus_t uwRet;
UINT8 msgPrio = 0;
CHAR ucTemp[MSGINFO_LEN] = "";
UINT32 uwCmp;
uwRet = osMessageQueueGet(g_cmsisMqId, ucTemp, &msgPrio, TIMEOUT_COUNT);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
uwCmp = memcmp(ucTemp, g_cmsisMessageInfo[MSGQUEUE_COUNT_INDEX_0], MSGINFO_LEN);
ICUNIT_ASSERT_EQUAL(uwRet, 0, uwCmp);
uwRet = osMessageQueueDelete(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
osThreadExit();
}
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_0100
* @tc.name : message queue operation for creat
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueNew001, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisMqId = osMessageQueueNew(MSGQUEUE_COUNT, MSG_SIZE, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisMqId, NULL, g_cmsisMqId);
(void)osMessageQueueDelete(g_cmsisMqId);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_0200
* @tc.name : message queue operation for creat when msg_count = 0
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueNew002, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisMqId = osMessageQueueNew(0, MSG_SIZE, NULL);
ICUNIT_ASSERT_EQUAL(g_cmsisMqId, NULL, g_cmsisMqId);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_0300
* @tc.name : message queue operation for creat when msg_size = 0
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueNew003, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisMqId = osMessageQueueNew(MSGQUEUE_COUNT, 0, NULL);
ICUNIT_ASSERT_EQUAL(g_cmsisMqId, NULL, g_cmsisMqId);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_0400
* @tc.name : message queue operation for delete
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueDelete001, Function | MediumTest | Level1)
{
osStatus_t uwRet;
g_cmsisMqId = osMessageQueueNew(MSGQUEUE_COUNT, MSG_SIZE, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisMqId, NULL, g_cmsisMqId);
uwRet = osMessageQueueDelete(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_0500
* @tc.name : message queue delete operation with mq_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueDelete002, Function | MediumTest | Level1)
{
osStatus_t uwRet = osMessageQueueDelete(NULL);
ICUNIT_ASSERT_EQUAL(uwRet, osErrorParameter, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_0600
* @tc.name : message queue operation for put
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueuePut001, Function | MediumTest | Level1)
{
osStatus_t uwRet;
g_cmsisMqId = osMessageQueueNew(MSGQUEUE_COUNT, MSG_SIZE, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisMqId, NULL, g_cmsisMqId);
uwRet = osMessageQueuePut(g_cmsisMqId, g_cmsisMessageInfo[MSGQUEUE_COUNT_INDEX_0], 0, 0);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
uwRet = osMessageQueueDelete(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_0700
* @tc.name : message queue put operation with mq_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueuePut002, Function | MediumTest | Level1)
{
osStatus_t uwRet = osMessageQueuePut(NULL, g_cmsisMessageInfo[MSGQUEUE_COUNT_INDEX_0], 0, 0);
ICUNIT_ASSERT_EQUAL(uwRet, osErrorParameter, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_0800
* @tc.name : message queue operation for put when msg_ptr = 0
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueuePut003, Function | MediumTest | Level1)
{
osStatus_t uwRet;
g_cmsisMqId = osMessageQueueNew(MSGQUEUE_COUNT, MSG_SIZE, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisMqId, NULL, g_cmsisMqId);
uwRet = osMessageQueuePut(g_cmsisMqId, NULL, 0, 0);
ICUNIT_ASSERT_EQUAL(uwRet, osErrorParameter, uwRet);
uwRet = osMessageQueueDelete(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_0900
* @tc.name : message queue operation for get
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueGet001, Function | MediumTest | Level1)
{
osStatus_t uwRet;
UINT32 uId;
osThreadId_t id;
osThreadAttr_t attr;
attr.name = "test";
attr.attr_bits = 0U;
attr.cb_mem = NULL;
attr.cb_size = 0U;
attr.stack_mem = NULL;
attr.stack_size = TEST_TASK_STACK_SIZE;
attr.priority = osPriorityAboveNormal;
uId = osKernelLock();
ICUNIT_ASSERT_EQUAL(uId, 0, uId); /* 1, common data for test, no special meaning */
g_cmsisMqId = osMessageQueueNew(MSGQUEUE_COUNT, MSG_SIZE, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisMqId, NULL, g_cmsisMqId);
id = osThreadNew((osThreadFunc_t)CmsisMessageQueueGetFunc001, NULL, &attr);
ICUNIT_ASSERT_NOT_EQUAL(id, NULL, id);
uwRet = osMessageQueuePut(g_cmsisMqId, g_cmsisMessageInfo[MSGQUEUE_COUNT_INDEX_0], 0, 0);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
uId = osKernelUnlock();
ICUNIT_ASSERT_EQUAL(uId, 1, uId); /* 1, common data for test, no special meaning */
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_1000
* @tc.name : message queue get operation with mq_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueGet002, Function | MediumTest | Level1)
{
osStatus_t uwRet;
UINT8 msgPrio = 0;
CHAR ucTemp[MSGINFO_LEN] = "";
uwRet = osMessageQueueGet(NULL, ucTemp, &msgPrio, TIMEOUT_COUNT);
ICUNIT_ASSERT_EQUAL(uwRet, osErrorParameter, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_1100
* @tc.name : message queue operation for get when msg_ptr = 0
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueGet003, Function | MediumTest | Level1)
{
osStatus_t uwRet;
UINT8 msgPrio = 0;
g_cmsisMqId = osMessageQueueNew(MSGQUEUE_COUNT, MSG_SIZE, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisMqId, NULL, g_cmsisMqId);
uwRet = osMessageQueueGet(g_cmsisMqId, NULL, &msgPrio, TIMEOUT_COUNT);
ICUNIT_ASSERT_EQUAL(uwRet, osErrorParameter, uwRet);
uwRet = osMessageQueueDelete(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_1200
* @tc.name : message queue operation for get msg size
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueGetMsgSize001, Function | MediumTest | Level1)
{
UINT32 uwRet;
g_cmsisMqId = osMessageQueueNew(MSGQUEUE_COUNT, MSG_SIZE, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisMqId, NULL, g_cmsisMqId);
uwRet = osMessageQueueGetMsgSize(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, MSG_SIZE, uwRet);
uwRet = osMessageQueueDelete(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_1300
* @tc.name : message queue get msg size with mq_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueGetMsgSize002, Function | MediumTest | Level1)
{
UINT32 uwRet = osMessageQueueGetMsgSize(NULL);
ICUNIT_ASSERT_EQUAL(uwRet, 0, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_1400
* @tc.name : message queue operation for get capacity
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueGetCapacity001, Function | MediumTest | Level1)
{
UINT32 uwRet;
g_cmsisMqId = osMessageQueueNew(MSGQUEUE_COUNT, MSG_SIZE, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisMqId, NULL, g_cmsisMqId);
uwRet = osMessageQueueGetCapacity(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, MSGQUEUE_COUNT, uwRet);
uwRet = osMessageQueueDelete(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_1500
* @tc.name : message queue get capacity with mq_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueGetCapacity002, Function | MediumTest | Level1)
{
UINT32 uwRet = osMessageQueueGetCapacity(NULL);
ICUNIT_ASSERT_EQUAL(uwRet, 0, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_1600
* @tc.name : message queue operation for get count
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueGetCount001, Function | MediumTest | Level1)
{
UINT32 uwRet;
g_cmsisMqId = osMessageQueueNew(MSGQUEUE_COUNT, MSG_SIZE, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisMqId, NULL, g_cmsisMqId);
uwRet = osMessageQueuePut(g_cmsisMqId, g_cmsisMessageInfo[MSGQUEUE_COUNT_INDEX_0], 0, 0);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
uwRet = osMessageQueuePut(g_cmsisMqId, g_cmsisMessageInfo[MSGQUEUE_COUNT_INDEX_1], 0, 0);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
uwRet = osMessageQueuePut(g_cmsisMqId, g_cmsisMessageInfo[MSGQUEUE_COUNT_INDEX_2], 0, 0);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
uwRet = osMessageQueueGetCount(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, MSGQUEUE_PUT_COUNT, uwRet);
uwRet = osMessageQueueDelete(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_1700
* @tc.name : message queue get count with mq_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueGetCount002, Function | MediumTest | Level1)
{
UINT32 uwRet = osMessageQueueGetCount(NULL);
ICUNIT_ASSERT_EQUAL(uwRet, 0, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_1800
* @tc.name : message queue operation for get space
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueGetSpace001, Function | MediumTest | Level1)
{
UINT32 uwRet;
g_cmsisMqId = osMessageQueueNew(MSGQUEUE_COUNT, MSG_SIZE, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisMqId, NULL, g_cmsisMqId);
uwRet = osMessageQueuePut(g_cmsisMqId, g_cmsisMessageInfo[MSGQUEUE_COUNT_INDEX_0], 0, 0);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
uwRet = osMessageQueuePut(g_cmsisMqId, g_cmsisMessageInfo[MSGQUEUE_COUNT_INDEX_1], 0, 0);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
uwRet = osMessageQueuePut(g_cmsisMqId, g_cmsisMessageInfo[MSGQUEUE_COUNT_INDEX_2], 0, 0);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
uwRet = osMessageQueueGetSpace(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, MSGQUEUE_SPACE_COUNT, uwRet);
uwRet = osMessageQueueDelete(g_cmsisMqId);
ICUNIT_ASSERT_EQUAL(uwRet, osOK, uwRet);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MSG_OPERATION_1900
* @tc.name : message queue get space with mq_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMsgFuncTestSuite, testOsMessageQueueGetSpace002, Function | MediumTest | Level1)
{
UINT32 uwRet = osMessageQueueGetSpace(NULL);
ICUNIT_ASSERT_EQUAL(uwRet, 0, uwRet);
return 0;
};
RUN_TEST_SUITE(CmsisMsgFuncTestSuite);
void CmsisMsgFuncTest(void)
{
RUN_ONE_TESTCASE(testOsMessageQueueNew001);
RUN_ONE_TESTCASE(testOsMessageQueueNew002);
RUN_ONE_TESTCASE(testOsMessageQueueNew003);
RUN_ONE_TESTCASE(testOsMessageQueueDelete001);
RUN_ONE_TESTCASE(testOsMessageQueueDelete002);
RUN_ONE_TESTCASE(testOsMessageQueuePut001);
RUN_ONE_TESTCASE(testOsMessageQueuePut002);
RUN_ONE_TESTCASE(testOsMessageQueuePut003);
RUN_ONE_TESTCASE(testOsMessageQueueGet001);
RUN_ONE_TESTCASE(testOsMessageQueueGet002);
RUN_ONE_TESTCASE(testOsMessageQueueGet003);
RUN_ONE_TESTCASE(testOsMessageQueueGetMsgSize001);
RUN_ONE_TESTCASE(testOsMessageQueueGetMsgSize002);
RUN_ONE_TESTCASE(testOsMessageQueueGetCapacity001);
RUN_ONE_TESTCASE(testOsMessageQueueGetCapacity002);
RUN_ONE_TESTCASE(testOsMessageQueueGetCount001);
RUN_ONE_TESTCASE(testOsMessageQueueGetCount002);
RUN_ONE_TESTCASE(testOsMessageQueueGetSpace001);
RUN_ONE_TESTCASE(testOsMessageQueueGetSpace002);
}

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@@ -0,0 +1,296 @@
/*
* Copyright (c) 2023-2023 Huawei Device Co., Ltd. All rights reserved.
*
* Redistribution and use in source and binary forms, with or without modification,
* are permitted provided that the following conditions are met:
*
* 1. Redistributions of source code must retain the above copyright notice, this list of
* conditions and the following disclaimer.
*
* 2. Redistributions in binary form must reproduce the above copyright notice, this list
* of conditions and the following disclaimer in the documentation and/or other materials
* provided with the distribution.
*
* 3. Neither the name of the copyright holder nor the names of its contributors may be used
* to endorse or promote products derived from this software without specific prior written
* permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
* THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#include "xts_cmsis.h"
UINT16 g_cmsisTestMutexCount;
osMutexId_t g_cmsisOsMutexId;
osMutexAttr_t g_cmsisMutexAttr;
LITE_TEST_SUIT(Cmsis, Cmsismutex, CmsisMutexFuncTestSuite);
static BOOL CmsisMutexFuncTestSuiteSetUp(void)
{
return TRUE;
}
static BOOL CmsisMutexFuncTestSuiteTearDown(void)
{
return TRUE;
}
static void CmsisMutexGetOwnerFunc001(void const *argument)
{
(void)argument;
osStatus_t ret;
osThreadId_t id1;
osThreadId_t id2;
osThreadAttr_t attr;
g_cmsisOsMutexId = osMutexNew(&g_cmsisMutexAttr);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisOsMutexId, NULL, g_cmsisOsMutexId);
ret = osMutexAcquire(g_cmsisOsMutexId, LOS_WAIT_FOREVER);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
id1 = osMutexGetOwner(g_cmsisOsMutexId);
id2 = osThreadGetId();
ICUNIT_ASSERT_STRING_EQUAL(id1, id2, id1);
attr.name = osThreadGetName(id1);
ICUNIT_ASSERT_STRING_EQUAL("testMutexGetOwner001", attr.name, attr.name);
ret = osMutexRelease(g_cmsisOsMutexId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
ret = osMutexDelete(g_cmsisOsMutexId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
osThreadExit();
}
/**
* @tc.number : SUB_KERNEL_CMSIS_MUTEX_OPERATION_0100
* @tc.name : mutex operation for creat with NULL para
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMutexFuncTestSuite, testOsMutexNew001, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisOsMutexId = osMutexNew(NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisOsMutexId, NULL, g_cmsisOsMutexId);
(void)osMutexDelete(g_cmsisOsMutexId);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MUTEX_OPERATION_0200
* @tc.name : mutex operation for creat
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMutexFuncTestSuite, testOsMutexNew002, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisOsMutexId = osMutexNew(&g_cmsisMutexAttr);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisOsMutexId, NULL, g_cmsisOsMutexId);
(void)osMutexDelete(g_cmsisOsMutexId);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MUTEX_OPERATION_0300
* @tc.name : mutex operation for delete after creat mutex with NULL parameter
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMutexFuncTestSuite, testOsMutexDelete001, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisOsMutexId = osMutexNew(NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisOsMutexId, NULL, g_cmsisOsMutexId);
ret = osMutexDelete(g_cmsisOsMutexId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
ret = osMutexDelete(g_cmsisOsMutexId);
ICUNIT_ASSERT_EQUAL(ret, osErrorParameter, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MUTEX_OPERATION_0400
* @tc.name : mutex operation for delete
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMutexFuncTestSuite, testOsMutexDelete002, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisOsMutexId = osMutexNew(&g_cmsisMutexAttr);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisOsMutexId, NULL, g_cmsisOsMutexId);
ret = osMutexDelete(g_cmsisOsMutexId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
ret = osMutexDelete(g_cmsisOsMutexId);
ICUNIT_ASSERT_EQUAL(ret, osErrorParameter, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MUTEX_OPERATION_0500
* @tc.name : mutex operation for delete after mutex acquire and release
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMutexFuncTestSuite, testOsMutexDelete003, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisOsMutexId = osMutexNew(NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisOsMutexId, NULL, g_cmsisOsMutexId);
osMutexAcquire(g_cmsisOsMutexId, LOS_WAIT_FOREVER);
ret = osMutexDelete(g_cmsisOsMutexId);
ICUNIT_ASSERT_EQUAL(ret, osErrorResource, ret);
(void)osMutexRelease(g_cmsisOsMutexId);
ret = osMutexDelete(g_cmsisOsMutexId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MUTEX_OPERATION_0600
* @tc.name : mutex delete operation with mutex_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMutexFuncTestSuite, testOsMutexDelete004, Function | MediumTest | Level1)
{
osStatus_t ret = osMutexDelete(NULL);
ICUNIT_ASSERT_EQUAL(ret, osErrorParameter, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MUTEX_OPERATION_0700
* @tc.name : mutex acquire operation with mutex_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMutexFuncTestSuite, testOsMutexAcquire001, Function | MediumTest | Level1)
{
osStatus_t ret = osMutexAcquire(NULL, LOS_WAIT_FOREVER);
ICUNIT_ASSERT_EQUAL(ret, osErrorParameter, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MUTEX_OPERATION_0800
* @tc.name : mutex operation for acquire
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMutexFuncTestSuite, testOsMutexAcquire002, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisOsMutexId = osMutexNew(&g_cmsisMutexAttr);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisOsMutexId, NULL, g_cmsisOsMutexId);
ret = osMutexAcquire(g_cmsisOsMutexId, LOS_WAIT_FOREVER);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
(void)osMutexRelease(g_cmsisOsMutexId);
ret = osMutexDelete(g_cmsisOsMutexId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MUTEX_OPERATION_0900
* @tc.name : mutex operation for release
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMutexFuncTestSuite, testOsMutexRelease001, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisOsMutexId = osMutexNew(&g_cmsisMutexAttr);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisOsMutexId, NULL, g_cmsisOsMutexId);
ret = osMutexAcquire(g_cmsisOsMutexId, LOS_WAIT_FOREVER);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
ret = osMutexDelete(g_cmsisOsMutexId);
ICUNIT_ASSERT_EQUAL(ret, osErrorResource, ret);
ret = osMutexRelease(g_cmsisOsMutexId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
ret = osMutexDelete(g_cmsisOsMutexId);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MUTEX_OPERATION_1000
* @tc.name : mutex release operation with mutex_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMutexFuncTestSuite, testOsMutexRelease002, Function | MediumTest | Level1)
{
osStatus_t ret = osMutexRelease(NULL);
ICUNIT_ASSERT_EQUAL(ret, osErrorParameter, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MUTEX_OPERATION_1100
* @tc.name : mutex operation for get owner
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMutexFuncTestSuite, testOsMutexGetOwner001, Function | MediumTest | Level1)
{
osThreadId_t id;
osThreadAttr_t osAttr;
osAttr.name = "testMutexGetOwner001";
osAttr.attr_bits = 0U;
osAttr.cb_mem = NULL;
osAttr.cb_size = 0U;
osAttr.stack_mem = NULL;
osAttr.stack_size = TEST_TASK_STACK_SIZE;
osAttr.priority = osPriorityAboveNormal;
id = osThreadNew((osThreadFunc_t)CmsisMutexGetOwnerFunc001, NULL, &osAttr);
ICUNIT_ASSERT_NOT_EQUAL(id, NULL, id);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_MUTEX_OPERATION_1200
* @tc.name : mutex get owner operation with mutex_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisMutexFuncTestSuite, testOsMutexGetOwner002, Function | MediumTest | Level1)
{
osThreadId_t id = osMutexGetOwner(NULL);
ICUNIT_ASSERT_EQUAL(id, NULL, id);
return 0;
};
RUN_TEST_SUITE(CmsisMutexFuncTestSuite);
void CmsisMutexFuncTest(void)
{
RUN_ONE_TESTCASE(testOsMutexNew001);
RUN_ONE_TESTCASE(testOsMutexNew002);
RUN_ONE_TESTCASE(testOsMutexDelete001);
RUN_ONE_TESTCASE(testOsMutexDelete002);
RUN_ONE_TESTCASE(testOsMutexDelete003);
RUN_ONE_TESTCASE(testOsMutexDelete004);
RUN_ONE_TESTCASE(testOsMutexAcquire001);
RUN_ONE_TESTCASE(testOsMutexAcquire002);
RUN_ONE_TESTCASE(testOsMutexRelease001);
RUN_ONE_TESTCASE(testOsMutexRelease002);
RUN_ONE_TESTCASE(testOsMutexGetOwner001);
RUN_ONE_TESTCASE(testOsMutexGetOwner002);
}

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@@ -0,0 +1,466 @@
/*
* Copyright (c) 2023-2023 Huawei Device Co., Ltd. All rights reserved.
*
* Redistribution and use in source and binary forms, with or without modification,
* are permitted provided that the following conditions are met:
*
* 1. Redistributions of source code must retain the above copyright notice, this list of
* conditions and the following disclaimer.
*
* 2. Redistributions in binary form must reproduce the above copyright notice, this list
* of conditions and the following disclaimer in the documentation and/or other materials
* provided with the distribution.
*
* 3. Neither the name of the copyright holder nor the names of its contributors may be used
* to endorse or promote products derived from this software without specific prior written
* permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO,
* THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
* PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
* CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
* EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
* PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS;
* OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY,
* WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR
* OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF
* ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*/
#include "xts_cmsis.h"
osSemaphoreId_t g_cmsisSemSemaph;
LITE_TEST_SUIT(Cmsis, CmsisSem, CmsisSemFuncTestSuite);
static BOOL CmsisSemFuncTestSuiteSetUp(void)
{
return TRUE;
}
static BOOL CmsisSemFuncTestSuiteTearDown(void)
{
return TRUE;
}
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_0100
* @tc.name : semaphore operation for creat when Semaphhore count = 1 and 0
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreNew001, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT1, SEMAPHHORE_COUNT_INT0, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
(void)osSemaphoreDelete(g_cmsisSemSemaph);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_0200
* @tc.name : semaphore operation for creat when Semaphhore count = 10 and 1
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreNew002, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT10, SEMAPHHORE_COUNT_INT1, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
(void)osSemaphoreDelete(g_cmsisSemSemaph);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_0300
* @tc.name : semaphore operation for creat when Semaphhore count = 0 and 10
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreNew003, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT0, SEMAPHHORE_COUNT_INT10, NULL);
ICUNIT_ASSERT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
(void)osSemaphoreDelete(g_cmsisSemSemaph);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_0400
* @tc.name : semaphore operation for creat when Semaphhore count = 0 and 0
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreNew004, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT0, SEMAPHHORE_COUNT_INT0, NULL);
ICUNIT_ASSERT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
(void)osSemaphoreDelete(g_cmsisSemSemaph);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_0500
* @tc.name : semaphore operation for creat when Semaphhore count = 1 and 1
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreNew005, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT1, SEMAPHHORE_COUNT_INT1, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
(void)osSemaphoreDelete(g_cmsisSemSemaph);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_0600
* @tc.name : semaphore operation for creat when Semaphhore count = 10 and 10
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreNew006, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT10, SEMAPHHORE_COUNT_INT10, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
(void)osSemaphoreDelete(g_cmsisSemSemaph);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_0700
* @tc.name : semaphore operation for creat when Semaphhore count = 0xFE and 0
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreNew007, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_HEX_MAX, SEMAPHHORE_COUNT_INT0, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
(void)osSemaphoreDelete(g_cmsisSemSemaph);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_0800
* @tc.name : semaphore operation for creat when Semaphhore count = 0 and 0xFE
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreNew008, Function | MediumTest | Level1)
{
osStatus_t status;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT0, SEMAPHHORE_COUNT_HEX_MAX, NULL);
ICUNIT_ASSERT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
(void)osSemaphoreDelete(g_cmsisSemSemaph);
status = osDelay(DELAY_TICKS_5);
ICUNIT_ASSERT_EQUAL(status, osOK, status);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_0900
* @tc.name : semaphore operation for delete
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreDelete001, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT10, SEMAPHHORE_COUNT_INT0, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
ret = osSemaphoreDelete(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_1000
* @tc.name : semaphore delete operation twice
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreDelete002, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT10, SEMAPHHORE_COUNT_INT0, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
ret = osSemaphoreDelete(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
ret = osSemaphoreDelete(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osErrorParameter, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_1100
* @tc.name : semaphore delete operation with semaphore_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreDelete003, Function | MediumTest | Level1)
{
osStatus_t ret = osSemaphoreDelete(NULL);
ICUNIT_ASSERT_EQUAL(ret, osErrorParameter, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_1200
* @tc.name : semaphore operation for acquire when Semaphhore count = 1 and 1
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreAcquire001, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT1, SEMAPHHORE_COUNT_INT1, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
ret = osSemaphoreAcquire(g_cmsisSemSemaph, 0);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
ret = osSemaphoreDelete(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_1300
* @tc.name : semaphore operation for acquire when Semaphhore count = 1 and 0
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreAcquire002, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT1, SEMAPHHORE_COUNT_INT0, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
ret = osSemaphoreAcquire(g_cmsisSemSemaph, 0);
ICUNIT_ASSERT_EQUAL(ret, osErrorResource, ret);
ret = osSemaphoreDelete(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_1400
* @tc.name : semaphore operation for acquire when Semaphhore count = 0 and 1
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreAcquire003, Function | MediumTest | Level1)
{
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT0, SEMAPHHORE_COUNT_INT1, NULL);
ICUNIT_ASSERT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_1500
* @tc.name : semaphore acquire operation with semaphore_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreAcquire004, Function | MediumTest | Level1)
{
osStatus_t ret = osSemaphoreAcquire(NULL, 0);
ICUNIT_ASSERT_EQUAL(ret, osErrorParameter, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_1600
* @tc.name : semaphore operation for release
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreRelease001, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT1, SEMAPHHORE_COUNT_INT0, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
ret = osSemaphoreAcquire(g_cmsisSemSemaph, 0);
ICUNIT_ASSERT_EQUAL(ret, osErrorResource, ret);
ret = osSemaphoreRelease(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
ret = osSemaphoreDelete(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_1700
* @tc.name : semaphore release operation twice
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreRelease002, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT1, SEMAPHHORE_COUNT_INT0, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
ret = osSemaphoreRelease(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
ret = osSemaphoreRelease(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osErrorResource, ret);
ret = osSemaphoreDelete(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_1800
* @tc.name : semaphore operation for release after semaphore acquire
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreRelease003, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT1, SEMAPHHORE_COUNT_INT1, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
ret = osSemaphoreRelease(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osErrorResource, ret);
ret = osSemaphoreAcquire(g_cmsisSemSemaph, 0);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
ret = osSemaphoreRelease(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
ret = osSemaphoreRelease(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osErrorResource, ret);
ret = osSemaphoreDelete(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_1900
* @tc.name : semaphore release operation with semaphore_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreRelease004, Function | MediumTest | Level1)
{
osStatus_t ret = osSemaphoreRelease(NULL);
ICUNIT_ASSERT_EQUAL(ret, osErrorParameter, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_2000
* @tc.name : semaphore operation for get count when Semaphhore count = 1 or 0xFE
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreGetCount001, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT1, SEMAPHHORE_COUNT_INT1, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
ret = osSemaphoreGetCount(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, 1, ret); /* 1, common data for test, no special meaning */
ret = osSemaphoreDelete(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_HEX_MAX, SEMAPHHORE_COUNT_HEX_MAX, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
ret = osSemaphoreGetCount(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, SEMAPHHORE_COUNT_HEX_MAX, ret);
ret = osSemaphoreDelete(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_2100
* @tc.name : semaphore operation for get count when Semaphhore count = 1 or 0
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreGetCount002, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT1, SEMAPHHORE_COUNT_INT0, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
ret = osSemaphoreGetCount(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
ret = osSemaphoreDelete(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_INT0, SEMAPHHORE_COUNT_INT1, NULL);
ICUNIT_ASSERT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_2200
* @tc.name : semaphore operation for get count
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreGetCount003, Function | MediumTest | Level1)
{
osStatus_t ret;
g_cmsisSemSemaph = osSemaphoreNew(SEMAPHHORE_COUNT_HEX_MAX, SEMAPHHORE_COUNT_HEX_MAX, NULL);
ICUNIT_ASSERT_NOT_EQUAL(g_cmsisSemSemaph, NULL, g_cmsisSemSemaph);
ret = osSemaphoreAcquire(g_cmsisSemSemaph, osWaitForever);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
ret = osSemaphoreGetCount(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, SEMAPHHORE_COUNT_HEX_MAX - 1, ret); /* 1, common data for test, no special meaning */
ret = osSemaphoreDelete(g_cmsisSemSemaph);
ICUNIT_ASSERT_EQUAL(ret, osOK, ret);
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_SEM_OPERATION_2300
* @tc.name : semaphore get count operation with semaphore_id = NULL
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisSemFuncTestSuite, testOsSemaphoreGetCount004, Function | MediumTest | Level1)
{
osStatus_t ret = osSemaphoreGetCount(NULL);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
return 0;
};
RUN_TEST_SUITE(CmsisSemFuncTestSuite);
void CmsisSemFuncTest(void)
{
RUN_ONE_TESTCASE(testOsSemaphoreNew001);
RUN_ONE_TESTCASE(testOsSemaphoreNew002);
RUN_ONE_TESTCASE(testOsSemaphoreNew003);
RUN_ONE_TESTCASE(testOsSemaphoreNew004);
RUN_ONE_TESTCASE(testOsSemaphoreNew005);
RUN_ONE_TESTCASE(testOsSemaphoreNew006);
RUN_ONE_TESTCASE(testOsSemaphoreNew007);
RUN_ONE_TESTCASE(testOsSemaphoreNew008);
RUN_ONE_TESTCASE(testOsSemaphoreDelete001);
RUN_ONE_TESTCASE(testOsSemaphoreDelete002);
RUN_ONE_TESTCASE(testOsSemaphoreDelete003);
RUN_ONE_TESTCASE(testOsSemaphoreAcquire001);
RUN_ONE_TESTCASE(testOsSemaphoreAcquire002);
RUN_ONE_TESTCASE(testOsSemaphoreAcquire003);
RUN_ONE_TESTCASE(testOsSemaphoreAcquire004);
RUN_ONE_TESTCASE(testOsSemaphoreRelease001);
RUN_ONE_TESTCASE(testOsSemaphoreRelease002);
RUN_ONE_TESTCASE(testOsSemaphoreRelease003);
RUN_ONE_TESTCASE(testOsSemaphoreRelease004);
RUN_ONE_TESTCASE(testOsSemaphoreGetCount001);
RUN_ONE_TESTCASE(testOsSemaphoreGetCount002);
RUN_ONE_TESTCASE(testOsSemaphoreGetCount003);
RUN_ONE_TESTCASE(testOsSemaphoreGetCount004);
}

File diff suppressed because it is too large Load Diff

File diff suppressed because it is too large Load Diff

View File

@@ -715,6 +715,18 @@ LITE_TEST_CASE(CmsisTimerFuncTestSuite, testOsKernelGetSysTimerFreq001, Function
return 0;
};
/**
* @tc.number : SUB_KERNEL_CMSIS_TIMER_OPERATION_3400
* @tc.name : os operation for get sys time count
* @tc.desc : [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(CmsisTimerFuncTestSuite, testOsKernelGetSysTimerCount001, Function | MediumTest | Level1)
{
UINT32 uwRet = osKernelGetSysTimerCount();
ICUNIT_ASSERT_WITHIN_EQUAL(uwRet, 0, UINT_MAX, uwRet);
return 0;
};
RUN_TEST_SUITE(CmsisTimerFuncTestSuite);
void CmsisTimerFuncTest(void)
@@ -752,4 +764,5 @@ void CmsisTimerFuncTest(void)
RUN_ONE_TESTCASE(testOsTimerIsRunning009);
RUN_ONE_TESTCASE(testOsKernelGetTickFreq001);
RUN_ONE_TESTCASE(testOsKernelGetSysTimerFreq001);
}
RUN_ONE_TESTCASE(testOsKernelGetSysTimerCount001);
}

View File

@@ -32,5 +32,11 @@
void CmsisFuncTest(void)
{
CmsisEventFuncTest();
CmsisMsgFuncTest();
CmsisMutexFuncTest();
CmsisSemFuncTest();
CmsisTaskFuncTest();
CmsisTaskPriFuncTest();
CmsisTimerFuncTest();
}

View File

@@ -36,6 +36,39 @@
#include <limits.h>
#include "cmsis_os2.h"
#define LOS_WAIT_FOREVER 0xFFFFFFFF
#define TESTCOUNT_NUM_1 1
#define TESTCOUNT_NUM_2 2
#define TESTCOUNT_NUM_3 3
#define TESTCOUNT_NUM_4 4
#define TESTCOUNT_NUM_5 5
#define MSGQUEUE_COUNT 16
#define MSGQUEUE_SPACE_COUNT 13
#define MSGQUEUE_PUT_COUNT 3
#define MSG_SIZE 4
#define MSGINFO_LEN 4
#define TIMEOUT_COUNT 1000
#define BUF_LEN 32
#define MSGQUEUE_COUNT_INDEX_0 0
#define MSGQUEUE_COUNT_INDEX_1 1
#define MSGQUEUE_COUNT_INDEX_2 2
#define SEMAPHHORE_COUNT_HEX_MAX 0xFE
#define SEMAPHHORE_COUNT_INT0 0
#define SEMAPHHORE_COUNT_INT1 1
#define SEMAPHHORE_COUNT_INT10 10
#define EVENT_MASK_HEX_1 0x01
#define EVENT_MASK_HEX_2 0x02
#define EVENT_MASK_HEX_4 0x04
#define EVENT_MASK_HEX_10 0x10
#define EVENT_MASK_HEX_11 0x11
#define TIMEOUT_NUM_3 3
#define TIMEOUT_NUM_10 10
#define INVALID_FLAG_OPTION 0x00000004U
#define MILLISEC_NUM_INT10 10U
#define MILLISEC_NUM_INT4 4U
#define INVALID_TIMER_TYPE 10
@@ -45,4 +78,12 @@
#define DELAY_TICKS_5 5
#define DELAY_TICKS_10 10
#define PRIORITY_COUNT_NOT_MIN 3
#define PRIORITY_COUNT_MIN_1 4
#define PRIORITY_COUNT_MIN_2 5
#define PRIORITY_COUNT_MIN_3 6
#define PRIORITY_COUNT_MIN_4 7
#define MAX_UINT32 0xFFFFFFFF
#define ALIVE_INFO_DIS 10000
#endif

View File

@@ -647,6 +647,200 @@ LITE_TEST_CASE(IpcMqExceptionApiTestSuite, testMqSetAttrEBADFEINVAL, Function |
return 0;
}
/* *
* @tc.number SUB_KERNEL_IPC_MQ_OPEN_0100
* @tc.name mq_open function errno for EEXIST test
* @tc.desc [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(IpcMqExceptionApiTestSuite, testMqOpenEEXIST, Function | MediumTest | Level2)
{
int ret;
char qName[MQ_NAME_LEN];
mqd_t queue, queueOther;
ret = sprintf_s(qName, sizeof(qName), "testMqOpenEEXIST_%d", GetRandom(10000)); /* 10000, common data for test, no special meaning */
ICUNIT_ASSERT_EQUAL(ret, strlen(qName), ret);
queue = mq_open(qName, O_CREAT | O_RDWR, S_IRUSR | S_IWUSR, NULL);
ICUNIT_ASSERT_NOT_EQUAL(queue, (mqd_t)-1, queue); /* 1, common data for test, no special meaning */
queueOther = mq_open(qName, O_CREAT | O_EXCL, S_IRUSR | S_IWUSR, NULL);
ICUNIT_ASSERT_EQUAL(queueOther, (mqd_t)-1, queueOther); /* 1, common data for test, no special meaning */
ICUNIT_ASSERT_EQUAL(errno, EEXIST, errno);
ret = mq_close(queue);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
ret = mq_unlink(qName);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
return 0;
}
/* *
* @tc.number SUB_KERNEL_IPC_MQ_OPEN_0200
* @tc.name mq_open function errno for EINVAL test
* @tc.desc [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(IpcMqExceptionApiTestSuite, testMqOpenEINVAL, Function | MediumTest | Level2)
{
int i, ret;
mqd_t queue;
struct mq_attr attr = { 0 };
char qName[MQ_NAME_LEN];
const int max = 65535; /* 65535, common data for test, no special meaning */
ret = sprintf_s(qName, sizeof(qName), "testMqOpenEINVAL_%d", GetRandom(10000)); /* 10000, common data for test, no special meaning */
ICUNIT_ASSERT_EQUAL(ret, strlen(qName), ret);
for (i = 0; i < 6; i++) {
switch (i) {
case 0:
attr.mq_msgsize = -1; /* -1, common data for test, no special meaning */
attr.mq_maxmsg = max;
break;
case 1:
attr.mq_msgsize = max;
attr.mq_maxmsg = max;
break;
case 2:
attr.mq_msgsize = 10; /* 10, common data for test, no special meaning */
attr.mq_maxmsg = -1; /* -1, common data for test, no special meaning */
break;
case 3:
attr.mq_msgsize = 10; /* 10, common data for test, no special meaning */
attr.mq_maxmsg = max + 1;
break;
case 4:
attr.mq_msgsize = 0; /* 0, common data for test, no special meaning */
attr.mq_maxmsg = 16; /* 16, common data for test, no special meaning */
break;
case 5:
attr.mq_msgsize = 64; /* 64, common data for test, no special meaning */
attr.mq_maxmsg = 0; /* 0, common data for test, no special meaning */
break;
}
queue = mq_open(qName, O_CREAT | O_RDWR, S_IRUSR | S_IWUSR, &attr);
ICUNIT_ASSERT_EQUAL(queue, (mqd_t)-1, queue); /* 1, common data for test, no special meaning */
if (queue != (mqd_t)-1) { /* 1, common data for test, no special meaning */
ret = mq_close(queue);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
ret = mq_unlink(qName);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
}
ICUNIT_ASSERT_EQUAL(errno, EINVAL, errno);
}
for (i = 0; i < MQ_NAME_LEN; i++) {
qName[i] = 0;
}
attr.mq_msgsize = MQ_MSG_SIZE;
attr.mq_maxmsg = MQ_MAX_MSG;
queue = mq_open(qName, O_CREAT | O_RDWR, S_IRUSR | S_IWUSR, &attr);
ICUNIT_ASSERT_EQUAL(queue, (mqd_t)-1, queue); /* 1, common data for test, no special meaning */
ICUNIT_ASSERT_EQUAL(errno, EINVAL, errno);
return 0;
}
/* *
* @tc.number SUB_KERNEL_IPC_MQ_OPEN_0300
* @tc.name mq_open function errno for ENAMETOOLONG test
* @tc.desc [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(IpcMqExceptionApiTestSuite, testMqOpenENAMETOOLONG, Function | MediumTest | Level2)
{
char qName[MAX_MQ_NAME_LEN + 10]; /* 10, common data for test, no special meaning */
mqd_t queue;
int i, ret;
for (i = 0; i < MAX_MQ_NAME_LEN + 5; i++) { /* 5, common data for test, no special meaning */
qName[i] = '8';
}
qName[i] = '\0';
queue = mq_open(qName, O_CREAT | O_RDWR, S_IRUSR | S_IWUSR, NULL);
ICUNIT_ASSERT_EQUAL(queue, (mqd_t)-1, queue); /* -1, common data for test, no special meaning */
if (queue != (mqd_t)-1) { /* -1, common data for test, no special meaning */
ret = mq_close(queue);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
ret = mq_unlink(qName);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
}
ICUNIT_ASSERT_EQUAL(errno, ENAMETOOLONG, errno);
return 0;
}
/* *
* @tc.number SUB_KERNEL_IPC_MQ_OPEN_0400
* @tc.name mq_open function errno for ENOENT test
* @tc.desc [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(IpcMqExceptionApiTestSuite, testMqOpenENOENT, Function | MediumTest | Level3)
{
int ret;
mqd_t queue;
char qName[MQ_NAME_LEN];
ret = sprintf_s(qName, MQ_NAME_LEN, "testMqOpenENOENT_%d", GetRandom(10000)); /* 10000, common data for test, no special meaning */
ICUNIT_ASSERT_EQUAL(ret, strlen(qName), ret);
queue = mq_open(qName, O_RDWR, S_IRUSR | S_IWUSR, NULL);
ICUNIT_ASSERT_EQUAL(queue, (mqd_t)-1, queue); /* -1, common data for test, no special meaning */
if (queue != (mqd_t)-1) { /* -1, common data for test, no special meaning */
ret = mq_close(queue);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
ret = mq_unlink(qName);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
}
ICUNIT_ASSERT_EQUAL(errno, ENOENT, errno);
return 0;
}
/* *
* @tc.number SUB_KERNEL_IPC_MQ_OPEN_0600
* @tc.name mq_open function errno for ENOSPC test
* @tc.desc [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(IpcMqExceptionApiTestSuite, testMqOpenENOSPC, Function | MediumTest | Level3)
{
int ret;
mqd_t queue;
struct mq_attr setAttr = { 0 };
char qName[MQ_NAME_LEN];
ret = sprintf_s(qName, MQ_NAME_LEN, "testMqOpenENOSPC_%d", GetRandom(10000)); /* 10000, common data for test, no special meaning */
ICUNIT_ASSERT_EQUAL(ret, strlen(qName), ret);
setAttr.mq_msgsize = MAX_MQ_MSG_SIZE + 1; /* 1, common data for test, no special meaning */
setAttr.mq_maxmsg = MAX_MQ_NAME_LEN;
queue = mq_open(qName, O_CREAT | O_RDWR, S_IRUSR | S_IWUSR, &setAttr);
ICUNIT_ASSERT_EQUAL(queue, (mqd_t)-1, queue); /* -1, common data for test, no special meaning */
if (queue != (mqd_t)-1) { /* -1, common data for test, no special meaning */
ret = mq_close(queue);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
ret = mq_unlink(qName);
ICUNIT_ASSERT_EQUAL(ret, 0, ret);
}
ICUNIT_ASSERT_EQUAL(errno, ENOSPC, errno);
return 0;
}
/* *
* @tc.number SUB_KERNEL_IPC_MQ_CLOSE_0100
* @tc.name mq_close function errno for EBADF test
* @tc.desc [C- SOFTWARE -0200]
*/
LITE_TEST_CASE(IpcMqExceptionApiTestSuite, testMqCloseEBADF, Function | MediumTest | Level2)
{
int ret = mq_close(NULL);
ICUNIT_ASSERT_EQUAL(ret, -1, ret); /* -1, common data for test, no special meaning */
ICUNIT_ASSERT_EQUAL(errno, EBADF, errno);
return 0;
}
RUN_TEST_SUITE(IpcMqExceptionApiTestSuite);
void IpcMqExceptionFuncTest(void)
@@ -667,4 +861,10 @@ void IpcMqExceptionFuncTest(void)
RUN_ONE_TESTCASE(testMqUnlinkEINVAL);
RUN_ONE_TESTCASE(testMqGetAttrEBADFEINVAL);
RUN_ONE_TESTCASE(testMqSetAttrEBADFEINVAL);
RUN_ONE_TESTCASE(testMqOpenEEXIST);
RUN_ONE_TESTCASE(testMqOpenEINVAL);
RUN_ONE_TESTCASE(testMqOpenENAMETOOLONG);
RUN_ONE_TESTCASE(testMqOpenENOENT);
RUN_ONE_TESTCASE(testMqOpenENOSPC);
RUN_ONE_TESTCASE(testMqCloseEBADF);
}