gpt_udvt_test.c
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//#include "gpt_IT_test.h"
#include "kal_release.h" /* Basic data type */
#include "drv_features.h"
#include "kal_public_api.h"
#include "kal_debug.h"
//#include "syscomp_config.h"
//#include "stacklib.h" /* Basic type for dll, evshed, stacktimer */
#include "kal_public_defs.h"
#include "string.h"
#include <stdlib.h>
#include "stdio.h"
#include "uart_sw.h"
#include "fat_fs.h"
//#include "dma_hw.h"
//#include "dma_sw.h"
#include "us_timer.h"
#include "dcl.h"
#include "dcl_gpt.h"
#include "dcl_gpt_hw.h"
/*********************************************/
//#include "stack_config.h"
//#include "task_main_func.h"
//#include "stack_ltlcom.h"
//#include "hisr_config.h"
#include "kal_internal_api.h"
//#include "stack_common.h"
//#include "stack_msgs.h"
//#include "app_ltlcom.h"
//#include "tst_ltlcom.h"
//#include "task_config.h"
//#include "event_shed.h"
//#include "stack_timer.h"
#include "drv_comm.h"
//#include "L1d_reg.h"/* required for slow Idle mode */
//#include "config_hw.h"
/**********************************************/
#define TEST_CASE_INIT_INPUT_DATA 0xFFFFFFFF
#define ESCKEY (0x1b)
#define GPT_ONE_SHOT_COUNT_DOWN_VAL 50
#define GPT_REPEAT_COUNT_DOWN_VAL 150 //150 is enough for dbg_print
#define GPT_HW_DELAY_TIME 120
#define GPT_POLLING_COUNT_VAL 200
DCL_HANDLE hGPT_Handle1,hGPT_Handle2,hGPT_Handle3;
kal_uint32 time_start,time_now;
kal_uint32 gpt4_start_time,gpt4_now_time;
kal_bool Is_Case_Running = KAL_FALSE;
typedef enum {
GPT1_ONE_SHOT,
GPT1_REPEAT,
GPT2_ONE_SHOT,
GPT2_REPEAT,
GPT1_EXACT_TIME,
GPT1_EXACT_TIME_REPEAT,
GPT2_EXACT_TIME,
GPT2_EXACT_TIME_REPEAT,
GPT_TEST_NONE,
}GPT_TEST_MODE_STRUCT;
GPT_TEST_MODE_STRUCT Test_Mode = GPT_TEST_NONE;
extern kal_uint8 U_GetUARTByte(UART_PORT port);
extern void gpt_udvt_main_test();
void uDVT_GPT_Initialize();
void uDVT_GPT_TestCase_ONESHOT_REPEAT(DCL_EVENT gptEvent);
void uDVT_GPT_EXACT_TIME_CallBack(DCL_EVENT gptEvent);
void uDVT_GPT_EXACT_TIME_REPEAT_CallBack(DCL_EVENT gptEvent);
void uDVT_GPT_TestCase9_CallBack(DCL_EVENT gptEvent);
void gpt_udvt_testcase1();
void gpt_udvt_testcase2();
void gpt_udvt_testcase3();
void gpt_udvt_testcase4();
void gpt_udvt_testcase5();
void gpt_udvt_testcase6();
void gpt_udvt_testcase7();
void gpt_udvt_testcase8();
void gpt_udvt_testcase9();
void gpt_udvt_testcase10();
void gpt_udvt_testcase11();
void gpt_udvt_testcase12();
static void gpt_dbg_input(kal_uint32 *value);
/*************************************************************************
* FUNCTION
* gpt_udvt_main_test
*
* DESCRIPTION
* This function is the main entry for gpt test case
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_main_test()
{
kal_uint32 input_data = TEST_CASE_INIT_INPUT_DATA;
uDVT_GPT_Initialize();
while(1)
{
if(!Is_Case_Running)
{
dbg_print("***********************************************************\r\n");
dbg_print("*****************GPT UDVT Test Begin***********************\r\n");
dbg_print("***********************************************************\r\n");
dbg_print(" number0: choice again\r\n");
dbg_print(" number1: Case1-- gtp1 one shot\r\n");
dbg_print(" number2: Case2-- gpt1 repeat mode\r\n");
dbg_print(" number3: Case3-- gtp2 one shot\r\n");
dbg_print(" number4: Case4-- gpt2 repeat mode\r\n");
dbg_print(" number5: Case5-- gpt1 time out accuracy in oneshot mode\r\n");
dbg_print(" number6: Case6-- gpt2 time out accuracy in oneshot mode\r\n");
dbg_print(" number7: Case7-- gpt1 time out accuracy in repeat mode\r\n");
dbg_print(" number8: Case8-- gpt2 time out accuracy in repeat mode\r\n");
dbg_print(" number9: Case9-- gpt4,no lock,enable/reset bit test\r\n");
dbg_print(" number10: Case10-- gpt4. enable=1,lock=1.\r\n");
dbg_print(" number11: Case11-- check gpt4 counter is accuracy with 32k/gpt1\r\n");
dbg_print(" number12: Case12-- gpt3 check if continuously increasly.\r\n");
dbg_print("***********************************************************\r\n");
gpt_dbg_input(&input_data);
dbg_print("\r\n");
switch (input_data)
{
case 1:
{
gpt_udvt_testcase1();//gtp1 one shot
break;
}
case 2:
{
gpt_udvt_testcase2();//gpt1 repeat mode
break;
}
case 3:
{
gpt_udvt_testcase3();//gpt2 oneshot
break;
}
case 4:
{
gpt_udvt_testcase4();//gpt2 repeat mode
break;
}
case 5:
{
gpt_udvt_testcase5();//gpt1 time up after expected time period with onshot
break;
}
case 6:
{
gpt_udvt_testcase6();//gpt2 time up after expected time period with one shot
break;
}
case 7:
{
gpt_udvt_testcase7();//gpt2 time up after expected time period with repeat
break;
}
case 8:
{
gpt_udvt_testcase8();//gpt2 time up after expected time period with repeat
break;
}
case 9:
{
gpt_udvt_testcase9();//gpt4. no lock,enable/reset bit can start count as expected.
break;
}
case 10:
{
gpt_udvt_testcase10();//gpt4. enable=1,lock=1.
break;
}
case 11:
{
gpt_udvt_testcase11();//check gpt4 counter is accuracy with 32k/gpt1
break;
}
case 12:
{
gpt_udvt_testcase12();//gpt3 check if continuously increasly.
break;
}
default:
{
dbg_print("wrong case number,pls input case number again \r\n");
break;
}
}
}
}
}
/*************************************************************************
* FUNCTION
* gpt_udvt_testcase1
*
* DESCRIPTION
* This function is for testcase 1
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_testcase1()
{
HGPT_CTRL_RESET_T prReset;
HGPT_CTRL_CLK_T prClock;
dbg_print("---now,start gpt test case 1---\r\n");
Is_Case_Running = KAL_TRUE;
Test_Mode = GPT1_ONE_SHOT;
if (STATUS_OK != DclHGPT_RegisterCallback(hGPT_Handle1,
EVENT_HGPT_TIMEOUT,
uDVT_GPT_TestCase_ONESHOT_REPEAT))
{
dbg_print("Error:GPT-1 Reg Callback funtion failed\r\n");
}
prReset.u2CountValue = GPT_ONE_SHOT_COUNT_DOWN_VAL;
prReset.fgAutoReload = KAL_FALSE;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_RESET,(HGPT_CTRL *)&prReset))
{
dbg_print("Error: GPT-1 RESET command failed\r\n");
}
prClock.u4Clock = CLK_16K;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_CLK,(HGPT_CTRL *)&prClock))
{
dbg_print("Error: GPT-1 SET clock command failed\r\n ");
}
if(STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_START,0))
{
dbg_print("Error: GPT-1 SET start command failed\r\n");
}
}
/*************************************************************************
* FUNCTION
* gpt_udvt_testcase2
*
* DESCRIPTION
* This function is for testcase 2
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_testcase2()
{
HGPT_CTRL_RESET_T prReset;
HGPT_CTRL_CLK_T prClock;
dbg_print("---now,start gpt test case 2---\r\n");
Is_Case_Running = KAL_TRUE;
Test_Mode = GPT1_REPEAT;
if (STATUS_OK != DclHGPT_RegisterCallback(hGPT_Handle1,
EVENT_HGPT_TIMEOUT,
uDVT_GPT_TestCase_ONESHOT_REPEAT))
{
dbg_print("Error:GPT-1 Reg Callback funtion failed\r\n");
}
prReset.u2CountValue = GPT_REPEAT_COUNT_DOWN_VAL;
prReset.fgAutoReload = KAL_TRUE;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_RESET,(HGPT_CTRL*)&prReset))
{
dbg_print("Error: GPT-1 RESET command failed\r\n");
}
prClock.u4Clock = CLK_16K;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_CLK,(HGPT_CTRL *)&prClock))
{
dbg_print("Error: GPT-1 SET clock command failed \r\n");
}
if(STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_START,0))
{
dbg_print("Error: GPT-1 SET start command failed \r\n");
}
}
/*************************************************************************
* FUNCTION
* gpt_udvt_testcase3
*
* DESCRIPTION
* This function is for testcase 3
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_testcase3()
{
HGPT_CTRL_RESET_T prReset;
HGPT_CTRL_CLK_T prClock;
dbg_print("---now,start gpt test case 3---\r\n");
Is_Case_Running = KAL_TRUE;
Test_Mode = GPT2_ONE_SHOT;
if (STATUS_OK != DclHGPT_RegisterCallback(hGPT_Handle2,
EVENT_HGPT_TIMEOUT,
uDVT_GPT_TestCase_ONESHOT_REPEAT))
{
dbg_print("Error:GPT-1 Reg Callback funtion failed\r\n");
}
prReset.u2CountValue = GPT_ONE_SHOT_COUNT_DOWN_VAL;
prReset.fgAutoReload = KAL_FALSE;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle2,HGPT_CMD_RESET,(HGPT_CTRL *)&prReset))
{
dbg_print("Error: GPT-1 RESET command failed\r\n");
}
prClock.u4Clock = CLK_16K;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle2,HGPT_CMD_CLK,(HGPT_CTRL *)&prClock))
{
dbg_print("Error: GPT-1 SET clock command failed\r\n ");
}
if(STATUS_OK != DclHGPT_Control(hGPT_Handle2,HGPT_CMD_START,0))
{
dbg_print("Error: GPT-1 SET start command failed\r\n");
}
}
/*************************************************************************
* FUNCTION
* gpt_udvt_testcase4
*
* DESCRIPTION
* This function is for testcase 4
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_testcase4()
{
HGPT_CTRL_RESET_T prReset;
HGPT_CTRL_CLK_T prClock;
dbg_print("---now,start gpt test case 4---\r\n");
Is_Case_Running = KAL_TRUE;
Test_Mode = GPT2_REPEAT;
if (STATUS_OK != DclHGPT_RegisterCallback(hGPT_Handle2,
EVENT_HGPT_TIMEOUT,
uDVT_GPT_TestCase_ONESHOT_REPEAT))
{
dbg_print("Error:GPT-1 Reg Callback funtion failed\r\n");
}
prReset.u2CountValue = GPT_REPEAT_COUNT_DOWN_VAL;
prReset.fgAutoReload = KAL_TRUE;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle2,HGPT_CMD_RESET,(HGPT_CTRL*)&prReset))
{
dbg_print("Error: GPT-1 RESET command failed\r\n");
}
prClock.u4Clock = CLK_16K;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle2,HGPT_CMD_CLK,(HGPT_CTRL *)&prClock))
{
dbg_print("Error: GPT-1 SET clock command failed \r\n");
}
if(STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_START,0))
{
dbg_print("Error: GPT-1 SET start command failed \r\n");
}
}
/*************************************************************************
* FUNCTION
* gpt_udvt_testcase5
*
* DESCRIPTION
* This function is for testcase 5
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_testcase5()
{
HGPT_CTRL_RESET_T prReset;
HGPT_CTRL_CLK_T prClock;
dbg_print("---now,start gpt test case 5---\r\n");
Is_Case_Running = KAL_TRUE;
Test_Mode = GPT1_EXACT_TIME;
if (STATUS_OK != DclHGPT_RegisterCallback(hGPT_Handle1,
EVENT_HGPT_TIMEOUT,
uDVT_GPT_EXACT_TIME_CallBack))
{
dbg_print("Error:GPT-1 Reg Callback funtion failed\r\n");
}
prReset.u2CountValue = GPT_ONE_SHOT_COUNT_DOWN_VAL;
prReset.fgAutoReload = KAL_FALSE;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_RESET,(HGPT_CTRL*)&prReset))
{
dbg_print("Error: GPT-1 RESET command failed\r\n");
}
prClock.u4Clock = CLK_16K;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_CLK,(HGPT_CTRL *)&prClock))
{
dbg_print("Error: GPT-1 SET clock command failed \r\n");
}
if(STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_START,0))
{
dbg_print("Error: GPT-1 SET start command failed \r\n");
}
time_start = drv_get_current_time();
}
/*************************************************************************
* FUNCTION
* gpt_udvt_testcase6
*
* DESCRIPTION
* This function is for testcase 6
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_testcase6()
{
HGPT_CTRL_RESET_T prReset;
HGPT_CTRL_CLK_T prClock;
dbg_print("---now,start gpt test case 6---\r\n");
Is_Case_Running = KAL_TRUE;
Test_Mode = GPT2_EXACT_TIME;
if (STATUS_OK != DclHGPT_RegisterCallback(hGPT_Handle2,
EVENT_HGPT_TIMEOUT,
uDVT_GPT_EXACT_TIME_CallBack))
{
dbg_print("Error:GPT-2 Reg Callback funtion failed\r\n");
}
prReset.u2CountValue = GPT_ONE_SHOT_COUNT_DOWN_VAL;
prReset.fgAutoReload = KAL_FALSE;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle2,HGPT_CMD_RESET,(HGPT_CTRL*)&prReset))
{
dbg_print("Error: GPT-2 RESET command failed\r\n");
}
prClock.u4Clock = CLK_16K;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle2,HGPT_CMD_CLK,(HGPT_CTRL *)&prClock))
{
dbg_print("Error: GPT-2 SET clock command failed \r\n");
}
if(STATUS_OK != DclHGPT_Control(hGPT_Handle2,HGPT_CMD_START,0))
{
dbg_print("Error: GPT-2 SET start command failed \r\n");
}
time_start = drv_get_current_time();
}
/*************************************************************************
* FUNCTION
* gpt_udvt_testcase7
*
* DESCRIPTION
* This function is for testcase 7
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_testcase7()
{
HGPT_CTRL_RESET_T prReset;
HGPT_CTRL_CLK_T prClock;
dbg_print("---now,start gpt test case 7---\r\n");
Is_Case_Running = KAL_TRUE;
Test_Mode = GPT1_EXACT_TIME_REPEAT;
if (STATUS_OK != DclHGPT_RegisterCallback(hGPT_Handle1,
EVENT_HGPT_TIMEOUT,
uDVT_GPT_EXACT_TIME_REPEAT_CallBack))
{
dbg_print("Error:GPT-2 Reg Callback funtion failed\r\n");
}
prReset.u2CountValue = GPT_REPEAT_COUNT_DOWN_VAL;
prReset.fgAutoReload = KAL_TRUE;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_RESET,(HGPT_CTRL*)&prReset))
{
dbg_print("Error: GPT-2 RESET command failed\r\n");
}
prClock.u4Clock = CLK_16K;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_CLK,(HGPT_CTRL *)&prClock))
{
dbg_print("Error: GPT-2 SET clock command failed \r\n");
}
if(STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_START,0))
{
dbg_print("Error: GPT-2 SET start command failed \r\n");
}
time_start = drv_get_current_time();
}
/*************************************************************************
* FUNCTION
* gpt_udvt_testcase8
*
* DESCRIPTION
* This function is for testcase 8
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_testcase8()
{
HGPT_CTRL_RESET_T prReset;
HGPT_CTRL_CLK_T prClock;
dbg_print("---now,start gpt test case 8 ---\r\n");
Is_Case_Running = KAL_TRUE;
Test_Mode = GPT2_EXACT_TIME_REPEAT;
if (STATUS_OK != DclHGPT_RegisterCallback(hGPT_Handle2,
EVENT_HGPT_TIMEOUT,
uDVT_GPT_EXACT_TIME_REPEAT_CallBack))
{
dbg_print("Error:GPT-2 Reg Callback funtion failed\r\n");
}
prReset.u2CountValue = GPT_REPEAT_COUNT_DOWN_VAL;
prReset.fgAutoReload = KAL_TRUE;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle2,HGPT_CMD_RESET,(HGPT_CTRL*)&prReset))
{
dbg_print("Error: GPT-2 RESET command failed\r\n");
}
prClock.u4Clock = CLK_16K;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle2,HGPT_CMD_CLK,(HGPT_CTRL *)&prClock))
{
dbg_print("Error: GPT-2 SET clock command failed \r\n");
}
if(STATUS_OK != DclHGPT_Control(hGPT_Handle2,HGPT_CMD_START,0))
{
dbg_print("Error: GPT-2 SET start command failed \r\n");
}
time_start = drv_get_current_time();
}
/*************************************************************************
* FUNCTION
* gpt_udvt_testcase9
*
* DESCRIPTION
* This function is for testcase 9
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_testcase9()
{
kal_uint32 i;
dbg_print("---now,start gpt test case 9---\r\n");
Is_Case_Running = KAL_TRUE;
*((volatile kal_uint32 *)(GPT_base + 0x0028)) = 0x00;//no lock,disable gpt4
ust_busy_wait(GPT_HW_DELAY_TIME);
*((volatile kal_uint32 *)(GPT_base + 0x0028)) = 0x01;//no lock,enable gpt4
for(i = 0; i < GPT_POLLING_COUNT_VAL; i++)
{
dbg_print("GPT4 Register Count Is : %d \r\n",*((volatile kal_uint32 *)(GPT_base + 0x002C)));
}
*((volatile kal_uint32 *)(GPT_base + 0x0028)) = 0x00;//no lock,disable gpt4
dbg_print("gpt4 is disabbd\r\n");
ust_busy_wait(GPT_HW_DELAY_TIME);
dbg_print("gpt4 is enabled\r\n");
*((volatile kal_uint32 *)(GPT_base + 0x0028)) = 0x01;//no lock,enable gpt4
for(i = 0; i < GPT_POLLING_COUNT_VAL; i++)
{
dbg_print("GPT4 Register Count Is : %d \r\n",*((volatile kal_uint32 *)(GPT_base + 0x002C)));
}
Is_Case_Running = KAL_FALSE;
}
/*************************************************************************
* FUNCTION
* gpt_udvt_testcase10
*
* DESCRIPTION
* This function is for testcase 10
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_testcase10()
{
kal_uint32 i;
dbg_print("---now,start gpt test case 10---\r\n");
Is_Case_Running = KAL_TRUE;
*((volatile kal_uint32 *)(GPT_base + 0x0028)) = 0x00;//no lock,disable gpt4
ust_busy_wait(GPT_HW_DELAY_TIME);
*((volatile kal_uint32 *)(GPT_base + 0x0028)) = 0x01;//no lock,enable gpt4
for(i = 0; i < GPT_POLLING_COUNT_VAL; i++)
{
dbg_print("GPT4 Register Count Is : %d \r\n",*((volatile kal_uint32 *)(GPT_base + 0x002C)));
}
dbg_print("gpt4 is locked\r\n");
*((volatile kal_uint32 *)(GPT_base + 0x0028)) = 0x03;//lock,enable gpt4.note: once it is locked, it can not be unlocked until hw reset.
for(i = 0; i < GPT_POLLING_COUNT_VAL; i++)
{
dbg_print("GPT4 Register Count Is : %d \r\n",*((volatile kal_uint32 *)(GPT_base + 0x002C)));
}
dbg_print("now ,try to stop gpt4 when it locked\r\n");
*((volatile kal_uint32 *)(GPT_base + 0x0028)) = 0x02;//lock,disable gpt4
for(i = 0; i < GPT_POLLING_COUNT_VAL; i++)
{
dbg_print("GPT4 Register Count Is : %d \r\n",*((volatile kal_uint32 *)(GPT_base + 0x002C)));
}
dbg_print("now ,unlock gpt4 and start it\r\n");
*((volatile kal_uint32 *)(GPT_base + 0x0028)) = 0x00;//no lock,disable gpt4
ust_busy_wait(GPT_HW_DELAY_TIME);
*((volatile kal_uint32 *)(GPT_base + 0x0028)) = 0x01;//no lock,enable gpt4
//*((volatile kal_uint32 *)(GPT_base + 0x0028)) = 0x01;//lock,enable gpt4
for(i = 0; i < GPT_POLLING_COUNT_VAL; i++)
{
dbg_print("GPT4 Register Count Is : %d \r\n",*((volatile kal_uint32 *)(GPT_base + 0x002C)));
}
Is_Case_Running = KAL_FALSE;
}
/*************************************************************************
* FUNCTION
* gpt_udvt_testcase11
*
* DESCRIPTION
* This function is for testcase 11
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_testcase11()
{
HGPT_CTRL_RESET_T prReset;
HGPT_CTRL_CLK_T prClock;
dbg_print("---now,start gpt test case 11--- \r\n");
Is_Case_Running = KAL_TRUE;
*((volatile kal_uint32 *)(GPT_base + 0x0028)) = 0x01;//no lock,enable gpt4
if (STATUS_OK != DclHGPT_RegisterCallback(hGPT_Handle1,
EVENT_HGPT_TIMEOUT,
uDVT_GPT_TestCase9_CallBack))
{
dbg_print("Error:GPT-1 Reg Callback funtion failed\r\n");
}
prClock.u4Clock = CLK_16K;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_CLK,(HGPT_CTRL *)&prClock))
{
dbg_print("Error: GPT-1 SET clock command failed\r\n ");
}
prReset.u2CountValue = 32768; // 2s
prReset.fgAutoReload = KAL_FALSE;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_RESET,(HGPT_CTRL*)&prReset))
{
dbg_print("Error: GPT-1 RESET command failed\r\n");
}
if(STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_START,0))
{
dbg_print("Error: GPT-1 SET start command failed\r\n");
}
gpt4_start_time = *((volatile kal_uint32 *)(GPT_base + 0x002C));
}
/*************************************************************************
* FUNCTION
* gpt_udvt_testcase12
*
* DESCRIPTION
* This function is for testcase 12
*
*
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void gpt_udvt_testcase12()
{
kal_uint32 i;
dbg_print("---now,start gpt test case 12---\r\n");
Is_Case_Running = KAL_TRUE;
*((volatile kal_uint32 *)(GPT_base + 0x001C)) = 0x01;//enable gpt3
for(i = 0; i < GPT_POLLING_COUNT_VAL; i++)
{
dbg_print("GPT3 Register Count Is : %d \r\n",*((volatile kal_uint32 *)(GPT_base + 0x0020)));
}
Is_Case_Running = KAL_FALSE;
}
/*************************************************************************
* FUNCTION
* uDVT_GPT_Initialize
*
* DESCRIPTION
* This function is the initial function, just to get the handle,and init hw gpt.
*
*
*
* PARAMETERS
* None
*
* RETURNS
* None
*
*************************************************************************/
void uDVT_GPT_Initialize()
{
if (STATUS_OK != DclHGPT_Initialize())
{
dbg_print("Error: GPT Initialization Failed\r\n");
}
/* Open Hanle for GPT-1 */
hGPT_Handle1 = DclHGPT_Open(GPT1, FLAGS_NONE);
if (hGPT_Handle1 == DCL_HANDLE_INVALID)
{
dbg_print("Error: GPT-1 handle invalid\r\n");
}
/* Open Hanle for GPT-2 */
hGPT_Handle2 = DclHGPT_Open(GPT2, FLAGS_NONE);
if (hGPT_Handle2 == DCL_HANDLE_INVALID)
{
dbg_print("Error: GPT-2 handle invalid\r\n");
}
/* Iinitialize Free running timer */
if (STATUS_OK != DclFGPT_Initialize())
{
dbg_print("Error: GPT Initialization Failed\r\n");
}
/* Opend handle for FGPT */
hGPT_Handle3 = DclFGPT_Open(DCL_GPT_FreeRUN3, FLAGS_NONE);
if (hGPT_Handle3 == DCL_HANDLE_INVALID)
{
dbg_print(" Error: GPT-3 handle invalid\r\n");
}
dbg_print("*** Initialization Done ***\r\n");
}
/*************************************************************************
* FUNCTION
* uDVT_GPT_TestCase_ONESHOT_REPEAT
*
* DESCRIPTION
* This is for test case1,case2,case3 and case4 to test one shot mode and repeat mode
*
*
*
* PARAMETERS
* GPT TIEMOUT EVENT
*
* RETURNS
* None
*
*************************************************************************/
void uDVT_GPT_TestCase_ONESHOT_REPEAT(DCL_EVENT gptEvent)
{
//kal_uint8 i;
DCL_UINT32 handle = 0;
static kal_uint8 temp_count = 0;
HGPT_CTRL_RESET_T prReset;
HGPT_CTRL_CLK_T prClock;
kal_uint8 temp_clk = 0;
static kal_uint8 success_count = 0;
dbg_print("\r\n");
if(Test_Mode == GPT1_ONE_SHOT)
{
handle = hGPT_Handle1;
dbg_print("gpt1 prescal test oneshot mode success times: %d \r\n",success_count++);
}
else if(Test_Mode == GPT1_REPEAT)
{
handle = hGPT_Handle1;
dbg_print("gpt1 prescal test repeat mode success times: %d \r\n",success_count++);
}
else if(Test_Mode == GPT2_ONE_SHOT)
{
handle = hGPT_Handle2;
dbg_print("gpt2 prescal test oneshot mode success times: %d \r\n",success_count++);
}
else if(Test_Mode == GPT2_REPEAT)
{
handle = hGPT_Handle2;
dbg_print("gpt2 prescal test repeat mode success times: %d \r\n",success_count++);
}
else
{
dbg_print("error,no test \r\n");
}
switch(temp_count)
{
case 0:
{
temp_clk = CLK_16K;
break;
}
case 1:
{
temp_clk = CLK_8K;
break;
}
case 2:
{
temp_clk = CLK_4K;
break;
}
case 3:
{
temp_clk = CLK_2K;
break;
}
case 4:
{
temp_clk = CLK_1K;
break;
}
case 5:
{
temp_clk = CLK_500;
break;
}
case 6:
{
temp_clk = CLK_250;
break;
}
case 7:
{
temp_clk = CLK_125;
break;
}
default:
{
break;
}
}
if(Test_Mode == GPT1_ONE_SHOT || Test_Mode == GPT2_ONE_SHOT)
{
if(temp_count != 8)
{
prClock.u4Clock = temp_clk;
if (STATUS_OK != DclHGPT_Control(handle,HGPT_CMD_CLK,(HGPT_CTRL *)&prClock))
{
dbg_print("Error: GPT-1 SET clock command failed \r\n");
}
if(STATUS_OK != DclHGPT_Control(handle,HGPT_CMD_START,0))
{
dbg_print("Error: GPT-1 SET start command failed \r\n");
}
temp_count++;
}
else
{
success_count = 0;
temp_count = 0;
Is_Case_Running = KAL_FALSE;
Test_Mode = GPT_TEST_NONE;
}
}
else if(Test_Mode == GPT1_REPEAT || Test_Mode == GPT2_REPEAT)
{
if(STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_STOP,0))
{
dbg_print("Error: GPT-1 SET start command failed \r\n");
}
ust_busy_wait(GPT_HW_DELAY_TIME);
if(temp_count != 8)
{
prReset.u2CountValue = GPT_REPEAT_COUNT_DOWN_VAL;
prReset.fgAutoReload = KAL_TRUE;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_RESET,(HGPT_CTRL*)&prReset))
{
dbg_print("Error: GPT-1 RESET command failed\r\n");
}
prClock.u4Clock = temp_clk;
if (STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_CLK,(HGPT_CTRL *)&prClock))
{
dbg_print("Error: GPT-1 SET clock command failed \r\n");
}
if(STATUS_OK != DclHGPT_Control(hGPT_Handle1,HGPT_CMD_START,0))
{
dbg_print("Error: GPT-1 SET start command failed \r\n");
}
temp_count++;
}
else
{
Is_Case_Running = KAL_FALSE;
Test_Mode = GPT_TEST_NONE;
success_count = 0;
temp_count = 0;
}
}
}
/*************************************************************************
* FUNCTION
* uDVT_GPT_EXACT_TIME_CallBack
*
* DESCRIPTION
* This function is for test case5 and case6 to test gpt1 and gpt2's
* timing accuracy
*
*
* PARAMETERS
* GPT TIMEOUT EVENT
*
* RETURNS
* None
*
*************************************************************************/
void uDVT_GPT_EXACT_TIME_CallBack(DCL_EVENT gptEvent)
{
kal_uint32 time_passed;
static kal_uint8 Is_First_Time = KAL_TRUE;
HGPT_CTRL_RESET_T prReset;
HGPT_CTRL_CLK_T prClock;
DCL_UINT32 handle = 0;
time_now = drv_get_current_time();
if(time_now >= time_start)
{
time_passed = time_now - time_start;
}
else
{
time_passed = 0xFFFFFFFF - time_start + time_now;
}
if(Test_Mode == GPT1_EXACT_TIME)
{
if(Is_First_Time == KAL_TRUE)
dbg_print("gpt1 time passed = %d,and the expected time is %d \r\n",time_passed,2*GPT_ONE_SHOT_COUNT_DOWN_VAL);
else
dbg_print("gpt1 time passed = %d,and the expected time is %d \r\n",time_passed,8*GPT_ONE_SHOT_COUNT_DOWN_VAL);
handle = hGPT_Handle1;
}
else if(Test_Mode == GPT2_EXACT_TIME)
{
if(Is_First_Time == KAL_TRUE)
dbg_print("gpt2 time passed = %d,and the expected time is %d \r\n",time_passed,2*GPT_ONE_SHOT_COUNT_DOWN_VAL);
else
dbg_print("gpt2 time passed = %d,and the expected time is %d \r\n",time_passed,8*GPT_ONE_SHOT_COUNT_DOWN_VAL);
handle = hGPT_Handle2;
}
else
{
dbg_print("error ,no test \r\n");
}
if(Is_First_Time == KAL_TRUE)
{
Is_First_Time = KAL_FALSE;
prReset.u2CountValue = GPT_ONE_SHOT_COUNT_DOWN_VAL;
prReset.fgAutoReload = KAL_FALSE;
if (STATUS_OK != DclHGPT_Control(handle,HGPT_CMD_RESET,(HGPT_CTRL*)&prReset))
{
dbg_print("Error: GPT-1 RESET command failed\r\n");
}
prClock.u4Clock = CLK_4K;
if (STATUS_OK != DclHGPT_Control(handle,HGPT_CMD_CLK,(HGPT_CTRL *)&prClock))
{
dbg_print("Error: GPT-1 SET clock command failed \r\n");
}
if(STATUS_OK != DclHGPT_Control(handle,HGPT_CMD_START,0))
{
dbg_print("Error: GPT-1 SET start command failed \r\n");
}
time_start = drv_get_current_time();
}
else
{
Is_First_Time = KAL_TRUE;
Is_Case_Running = KAL_FALSE;
}
}
/*************************************************************************
* FUNCTION
* uDVT_GPT_TestCase9_CallBack
*
* DESCRIPTION
* This function is for test case9 to test gpt4 timing function whether accurate or not
*
*
*
* PARAMETERS
* GPT TIMEOUT EVENT
*
* RETURNS
* None
*
*************************************************************************/
void uDVT_GPT_EXACT_TIME_REPEAT_CallBack(DCL_EVENT gptEvent)
{
kal_uint32 time_passed;
//static kal_uint8 Is_First_Time = KAL_TRUE;
//HGPT_CTRL_RESET_T prReset;
//HGPT_CTRL_CLK_T prClock;
DCL_UINT32 handle = 0;
static kal_uint8 repeat_count = 0;
time_now = drv_get_current_time();
if(time_now >= time_start)
{
time_passed = time_now - time_start;
}
else
{
time_passed = 0xFFFFFFFF - time_start + time_now;
}
repeat_count++;
if(repeat_count < 3)
{
time_start = drv_get_current_time();// must put here , because dbg_print cost many time
}
if(Test_Mode == GPT1_EXACT_TIME_REPEAT)
{
dbg_print("gpt1 time passed = %d,and the expected time is %d \r\n",time_passed,2*GPT_REPEAT_COUNT_DOWN_VAL);
handle = hGPT_Handle1;
}
else if(Test_Mode == GPT2_EXACT_TIME_REPEAT)
{
dbg_print("gpt2 time passed = %d,and the expected time is %d \r\n",time_passed,2*GPT_REPEAT_COUNT_DOWN_VAL);
handle = hGPT_Handle2;
}
else
{
dbg_print("error ,no test \r\n");
}
if(repeat_count >= 3)
{
repeat_count = 0;
Is_Case_Running = KAL_FALSE;
if(STATUS_OK != DclHGPT_Control(handle,HGPT_CMD_STOP,0))
{
dbg_print("Error: GPT-1 SET start command failed \r\n");
}
}
}
/*************************************************************************
* FUNCTION
* uDVT_GPT_TestCase9_CallBack
*
* DESCRIPTION
* This function is for test case9 to test gpt4 timing function whether accurate or not
*
*
*
* PARAMETERS
* GPT TIMEOUT EVENT
*
* RETURNS
* None
*
*************************************************************************/
void uDVT_GPT_TestCase9_CallBack(DCL_EVENT gptEvent)
{
kal_uint32 time_passed;
gpt4_now_time = *((volatile kal_uint32 *)(GPT_base + 0x002C));
if(gpt4_now_time >= gpt4_start_time)
{
time_passed = gpt4_now_time - gpt4_start_time;
}
else
{
time_passed = 0xFFFFFFFF - gpt4_start_time + gpt4_now_time;
}
dbg_print("gpt4 time passed = %d,and the expected time is 52000000 ",time_passed);
Is_Case_Running = KAL_FALSE;
}
/*************************************************************************
* FUNCTION
* gpt_dbg_input
*
* DESCRIPTION
* this function recieves data from hyper terminal.
*
*
*
* PARAMETERS
* input data
*
* RETURNS
* None
*
*************************************************************************/
void gpt_dbg_input(kal_uint32 *value)
{
//kal_uint32 result = 0;
kal_uint8 str[30], input, offset;
offset = 0;
while (1)
{
input = U_GetUARTByte(uart_port1);
if (input == 0x0d || input == 0x0a)
break;
if (input == ESCKEY)
return;
str[offset++] = input;
dbg_print("%c", input);
}
str[offset] = 0;
dbg_print("\r\n");
sscanf(str, "%d", value);
}