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402 lines
12 KiB
C
402 lines
12 KiB
C
/* This test is designed to test the ux_host_stack_device_get. */
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#include <stdio.h>
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#include "tx_api.h"
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#include "ux_api.h"
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#include "ux_system.h"
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#include "ux_utility.h"
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#include "ux_host_class_dpump.h"
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#include "ux_device_class_dpump.h"
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/* Define USBX test constants. */
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#define UX_TEST_STACK_SIZE 4096
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#define UX_TEST_BUFFER_SIZE 2048
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#define UX_TEST_RUN 1
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#define UX_TEST_MEMORY_SIZE (64*1024)
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/* Define the counters used in the test application... */
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static ULONG thread_0_counter;
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static ULONG thread_1_counter;
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static ULONG error_counter;
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/* Define USBX test global variables. */
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static unsigned char host_out_buffer[UX_HOST_CLASS_DPUMP_PACKET_SIZE];
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static unsigned char host_in_buffer[UX_HOST_CLASS_DPUMP_PACKET_SIZE];
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static unsigned char slave_buffer[UX_HOST_CLASS_DPUMP_PACKET_SIZE];
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static UX_HOST_CLASS *class_driver;
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static UX_HOST_CLASS_DPUMP *dpump;
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static UX_SLAVE_CLASS_DPUMP *dpump_slave;
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#define DEVICE_FRAMEWORK_LENGTH_FULL_SPEED 50
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static UCHAR device_framework_full_speed[] = {
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/* Device descriptor */
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0x12, 0x01, 0x10, 0x01, 0x00, 0x00, 0x00, 0x08,
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0xec, 0x08, 0x10, 0x00, 0x00, 0x00, 0x00, 0x00,
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0x00, 0x01,
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/* Configuration descriptor */
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0x09, 0x02, 0x20, 0x00, 0x01, 0x01, 0x00, 0xc0,
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0x32,
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/* Interface descriptor */
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0x09, 0x04, 0x00, 0x00, 0x02, 0x99, 0x99, 0x99,
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0x00,
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/* Endpoint descriptor (Bulk Out) */
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0x07, 0x05, 0x01, 0x02, 0x40, 0x00, 0x00,
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/* Endpoint descriptor (Bulk In) */
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0x07, 0x05, 0x82, 0x02, 0x40, 0x00, 0x00
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};
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#define DEVICE_FRAMEWORK_LENGTH_HIGH_SPEED 60
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static UCHAR device_framework_high_speed[] = {
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/* Device descriptor */
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0x12, 0x01, 0x00, 0x02, 0x00, 0x00, 0x00, 0x40,
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0x0a, 0x07, 0x25, 0x40, 0x01, 0x00, 0x01, 0x02,
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0x03, 0x01,
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/* Device qualifier descriptor */
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0x0a, 0x06, 0x00, 0x02, 0x00, 0x00, 0x00, 0x40,
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0x01, 0x00,
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/* Configuration descriptor */
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0x09, 0x02, 0x20, 0x00, 0x01, 0x01, 0x00, 0xc0,
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0x32,
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/* Interface descriptor */
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0x09, 0x04, 0x00, 0x00, 0x02, 0x99, 0x99, 0x99,
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0x00,
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/* Endpoint descriptor (Bulk Out) */
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0x07, 0x05, 0x01, 0x02, 0x00, 0x02, 0x00,
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/* Endpoint descriptor (Bulk In) */
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0x07, 0x05, 0x82, 0x02, 0x00, 0x02, 0x00
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};
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/* String Device Framework :
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Byte 0 and 1 : Word containing the language ID : 0x0904 for US
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Byte 2 : Byte containing the index of the descriptor
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Byte 3 : Byte containing the length of the descriptor string
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*/
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#define STRING_FRAMEWORK_LENGTH 38
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static UCHAR string_framework[] = {
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/* Manufacturer string descriptor : Index 1 */
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0x09, 0x04, 0x01, 0x0c,
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0x45, 0x78, 0x70, 0x72,0x65, 0x73, 0x20, 0x4c,
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0x6f, 0x67, 0x69, 0x63,
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/* Product string descriptor : Index 2 */
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0x09, 0x04, 0x02, 0x0c,
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0x44, 0x61, 0x74, 0x61, 0x50, 0x75, 0x6d, 0x70,
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0x44, 0x65, 0x6d, 0x6f,
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/* Serial Number string descriptor : Index 3 */
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0x09, 0x04, 0x03, 0x04,
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0x30, 0x30, 0x30, 0x31
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};
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/* Multiple languages are supported on the device, to add
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a language besides English, the unicode language code must
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be appended to the language_id_framework array and the length
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adjusted accordingly. */
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#define LANGUAGE_ID_FRAMEWORK_LENGTH 2
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static UCHAR language_id_framework[] = {
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/* English. */
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0x09, 0x04
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};
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/* Define prototypes for external Host Controller's (HCDs), classes and clients. */
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static VOID ux_test_instance_activate(VOID *dpump_instance);
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static VOID ux_test_instance_deactivate(VOID *dpump_instance);
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UINT _ux_host_class_dpump_entry(UX_HOST_CLASS_COMMAND *command);
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UINT ux_hcd_sim_initialize(UX_HCD *hcd);
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UINT _ux_host_class_dpump_write(UX_HOST_CLASS_DPUMP *dpump, UCHAR * data_pointer,
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ULONG requested_length, ULONG *actual_length);
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UINT _ux_host_class_dpump_read (UX_HOST_CLASS_DPUMP *dpump, UCHAR *data_pointer,
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ULONG requested_length, ULONG *actual_length);
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static TX_THREAD ux_test_thread_host_simulation;
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static TX_THREAD ux_test_thread_slave_simulation;
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static void ux_test_thread_host_simulation_entry(ULONG);
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static void ux_test_thread_slave_simulation_entry(ULONG);
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/* Define the ISR dispatch. */
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extern VOID (*test_isr_dispatch)(void);
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/* Prototype for test control return. */
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void test_control_return(UINT status);
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/* Define the ISR dispatch routine. */
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static void test_isr(void)
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{
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/* For further expansion of interrupt-level testing. */
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}
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static VOID error_callback(UINT system_level, UINT system_context, UINT error_code)
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{
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if (error_code != UX_DEVICE_HANDLE_UNKNOWN)
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{
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/* Failed test. */
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printf("Error on line %d, system_level: %d, system_context: %d, error code: %d\n", __LINE__, system_level, system_context, error_code);
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test_control_return(1);
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}
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}
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/* Define what the initial system looks like. */
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#ifdef CTEST
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void test_application_define(void *first_unused_memory)
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#else
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void usbx_ux_host_stack_device_get_test_application_define(void *first_unused_memory)
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#endif
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{
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UINT status;
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CHAR *stack_pointer;
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CHAR *memory_pointer;
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UX_SLAVE_CLASS_DPUMP_PARAMETER parameter;
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/* Initialize the free memory pointer. */
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stack_pointer = (CHAR *) first_unused_memory;
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memory_pointer = stack_pointer + (UX_TEST_STACK_SIZE * 2);
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/* Initialize USBX Memory. */
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status = ux_system_initialize(memory_pointer, UX_TEST_MEMORY_SIZE, UX_NULL, 0);
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/* Check for error. */
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if (status != UX_SUCCESS)
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{
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printf("Running ux_host_stack_device_get Test............................... ERROR #1\n");
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test_control_return(1);
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}
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/* Register the error callback. */
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_ux_utility_error_callback_register(error_callback);
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/* The code below is required for installing the host portion of USBX. */
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status = ux_host_stack_initialize(UX_NULL);
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/* Check for error. */
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if (status != UX_SUCCESS)
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{
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printf("Running ux_host_stack_device_get Test............................... ERROR #2\n");
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test_control_return(1);
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}
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/* Register all the host class drivers for this USBX implementation. */
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status = ux_host_stack_class_register(_ux_system_host_class_dpump_name, ux_host_class_dpump_entry);
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/* Check for error. */
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if (status != UX_SUCCESS)
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{
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printf("Running ux_host_stack_device_get Test............................... ERROR #3\n");
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test_control_return(1);
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}
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/* The code below is required for installing the device portion of USBX */
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status = ux_device_stack_initialize(device_framework_high_speed, DEVICE_FRAMEWORK_LENGTH_HIGH_SPEED,
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device_framework_full_speed, DEVICE_FRAMEWORK_LENGTH_FULL_SPEED,
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string_framework, STRING_FRAMEWORK_LENGTH,
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language_id_framework, LANGUAGE_ID_FRAMEWORK_LENGTH, UX_NULL);
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/* Check for error. */
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if (status != UX_SUCCESS)
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{
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printf("Running ux_host_stack_device_get Test............................... ERROR #5\n");
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test_control_return(1);
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}
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/* Set the parameters for callback when insertion/extraction of a Data Pump device. */
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parameter.ux_slave_class_dpump_instance_activate = ux_test_instance_activate;
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parameter.ux_slave_class_dpump_instance_deactivate = ux_test_instance_deactivate;
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/* Initialize the device dpump class. The class is connected with interface 0 */
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status = ux_device_stack_class_register(_ux_system_slave_class_dpump_name, _ux_device_class_dpump_entry,
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1, 0, ¶meter);
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/* Check for error. */
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if (status != UX_SUCCESS)
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{
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printf("Running ux_host_stack_device_get Test............................... ERROR #6\n");
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test_control_return(1);
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}
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/* Initialize the simulated device controller. */
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status = _ux_dcd_sim_slave_initialize();
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/* Check for error. */
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if (status != UX_SUCCESS)
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{
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printf("Running ux_host_stack_device_get Test............................... ERROR #7\n");
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test_control_return(1);
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}
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/* Register all the USB host controllers available in this system */
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status = ux_host_stack_hcd_register(_ux_system_host_hcd_simulator_name, ux_hcd_sim_host_initialize,0,0);
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/* Check for error. */
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if (status != UX_SUCCESS)
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{
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printf("Running ux_host_stack_device_get Test............................... ERROR #4\n");
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test_control_return(1);
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}
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/* Create the main host simulation thread. */
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status = tx_thread_create(&ux_test_thread_host_simulation, "test host simulation", ux_test_thread_host_simulation_entry, 0,
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stack_pointer, UX_TEST_STACK_SIZE,
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20, 20, 1, TX_AUTO_START);
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/* Check for error. */
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if (status != TX_SUCCESS)
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{
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printf("Running ux_host_stack_device_get Test............................... ERROR #8\n");
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test_control_return(1);
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}
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}
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static void ux_test_thread_host_simulation_entry(ULONG arg)
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{
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UINT status;
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UX_HOST_CLASS *class;
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UX_DEVICE *test_device;
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/* Inform user. */
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printf("Running ux_host_stack_device_get Test............................... ");
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/* Find the main data pump container. */
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status = ux_host_stack_class_get(_ux_system_host_class_dpump_name, &class);
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/* Check for error. */
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if (status != UX_SUCCESS)
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{
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/* DPUMP basic test error. */
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printf("ERROR #10\n");
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test_control_return(1);
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}
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/* We get the first instance of the data pump device. */
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do
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{
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status = ux_host_stack_class_instance_get(class, 0, (VOID **) &dpump);
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tx_thread_relinquish();
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} while (status != UX_SUCCESS);
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/* We still need to wait for the data pump status to be live. */
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while (dpump -> ux_host_class_dpump_state != UX_HOST_CLASS_INSTANCE_LIVE)
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{
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tx_thread_relinquish();
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}
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/* At this point, the data pump class has been found. Now get the first
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device using ux_host_stack_device_get. */
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status = ux_host_stack_device_get(0, &test_device);
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if (status != UX_SUCCESS)
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{
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/* ux_host_stack_device_get test error. */
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error_counter++;
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}
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/* Check if we get correct device. */
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if (test_device != dpump -> ux_host_class_dpump_device)
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{
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/* ux_host_stack_device_get test error. */
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error_counter++;
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}
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/* Call ux_host_stack_device_get with device index 1. */
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status = ux_host_stack_device_get(1, &test_device);
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if (status != UX_DEVICE_HANDLE_UNKNOWN)
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{
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/* ux_host_stack_device_get test error. */
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error_counter++;
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}
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/* Call ux_host_stack_device_get with device index exceeding maximum. */
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status = ux_host_stack_device_get(100, &test_device);
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if (status != UX_DEVICE_HANDLE_UNKNOWN)
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{
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/* ux_host_stack_device_get test error. */
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error_counter++;
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}
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/* Sleep for a tick to make sure everything is complete. */
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tx_thread_sleep(1);
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/* Check for errors from other threads. */
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if (error_counter)
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{
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/* Test error. */
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printf("ERROR #14\n");
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test_control_return(1);
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}
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else
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{
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/* Successful test. */
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printf("SUCCESS!\n");
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test_control_return(0);
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}
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}
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static VOID ux_test_instance_activate(VOID *dpump_instance)
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{
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/* Save the DPUMP instance. */
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dpump_slave = (UX_SLAVE_CLASS_DPUMP *) dpump_instance;
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}
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static VOID ux_test_instance_deactivate(VOID *dpump_instance)
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{
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/* Reset the DPUMP instance. */
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dpump_slave = UX_NULL;
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}
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