643 lines
		
	
	
		
			25 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			643 lines
		
	
	
		
			25 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
/**************************************************************************/
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/*!
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    @file     usbd_host.c
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    @author   hathach (tinyusb.org)
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    @section LICENSE
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    Software License Agreement (BSD License)
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    Copyright (c) 2013, hathach (tinyusb.org)
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    All rights reserved.
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    Redistribution and use in source and binary forms, with or without
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    modification, are permitted provided that the following conditions are met:
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    1. Redistributions of source code must retain the above copyright
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    notice, this list of conditions and the following disclaimer.
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    2. Redistributions in binary form must reproduce the above copyright
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    notice, this list of conditions and the following disclaimer in the
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    documentation and/or other materials provided with the distribution.
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    3. Neither the name of the copyright holders nor the
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    names of its contributors may be used to endorse or promote products
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    derived from this software without specific prior written permission.
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    THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS ''AS IS'' AND ANY
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    EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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    WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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    DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER BE LIABLE FOR ANY
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    DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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    INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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    LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION HOWEVER CAUSED AND
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    ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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    INCLUDING NEGLIGENCE OR OTHERWISE ARISING IN ANY WAY OUT OF THE USE OF THIS
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    SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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    This file is part of the tinyusb stack.
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*/
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/**************************************************************************/
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#include "common/tusb_common.h"
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#if MODE_HOST_SUPPORTED
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#define _TINY_USB_SOURCE_FILE_
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#ifndef CFG_TUD_TASK_PRIO
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#define CFG_TUD_TASK_PRIO 0
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#endif
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//--------------------------------------------------------------------+
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// INCLUDE
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//--------------------------------------------------------------------+
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#include "tusb.h"
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#include "hub.h"
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#include "usbh_hcd.h"
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//--------------------------------------------------------------------+
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// MACRO CONSTANT TYPEDEF
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//--------------------------------------------------------------------+
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static host_class_driver_t const usbh_class_drivers[] =
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{
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  #if HOST_CLASS_HID
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    [TUSB_CLASS_HID] = {
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        .init         = hidh_init,
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        .open_subtask = hidh_open_subtask,
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        .isr          = hidh_isr,
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        .close        = hidh_close
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    },
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  #endif
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  #if CFG_TUSB_HOST_CDC
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    [TUSB_CLASS_CDC] = {
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        .init         = cdch_init,
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        .open_subtask = cdch_open_subtask,
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        .isr          = cdch_isr,
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        .close        = cdch_close
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    },
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  #endif
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  #if CFG_TUSB_HOST_MSC
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    [TUSB_CLASS_MSC] = {
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        .init         = msch_init,
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        .open_subtask = msch_open_subtask,
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        .isr          = msch_isr,
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        .close        = msch_close
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    },
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  #endif
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  #if CFG_TUSB_HOST_HUB
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    [TUSB_CLASS_HUB] = {
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        .init         = hub_init,
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        .open_subtask = hub_open_subtask,
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        .isr          = hub_isr,
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        .close        = hub_close
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    },
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  #endif
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  #if CFG_TUSB_HOST_CUSTOM_CLASS
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    [TUSB_CLASS_MAPPED_INDEX_END-1] = {
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        .init         = cush_init,
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        .open_subtask = cush_open_subtask,
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        .isr          = cush_isr,
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        .close        = cush_close
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    }
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  #endif
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};
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enum { USBH_CLASS_DRIVER_COUNT = sizeof(usbh_class_drivers) / sizeof(host_class_driver_t) };
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//--------------------------------------------------------------------+
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// INTERNAL OBJECT & FUNCTION DECLARATION
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//--------------------------------------------------------------------+
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CFG_TUSB_ATTR_USBRAM usbh_device_info_t usbh_devices[CFG_TUSB_HOST_DEVICE_MAX+1]; // including zero-address
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//------------- Enumeration Task Data -------------/
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enum { ENUM_QUEUE_DEPTH = 16 };
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STATIC_VAR osal_queue_t enum_queue_hdl;
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CFG_TUSB_ATTR_USBRAM ATTR_ALIGNED(4) STATIC_VAR uint8_t enum_data_buffer[CFG_TUSB_HOST_ENUM_BUFFER_SIZE];
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//------------- Reporter Task Data -------------//
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//------------- Helper Function Prototypes -------------//
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static inline uint8_t get_new_address(void) ATTR_ALWAYS_INLINE;
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static inline uint8_t get_configure_number_for_device(tusb_desc_device_t* dev_desc) ATTR_ALWAYS_INLINE;
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//--------------------------------------------------------------------+
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// PUBLIC API (Parameter Verification is required)
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//--------------------------------------------------------------------+
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tusb_device_state_t tuh_device_get_state (uint8_t const dev_addr)
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{
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  TU_ASSERT( dev_addr <= CFG_TUSB_HOST_DEVICE_MAX, TUSB_DEVICE_STATE_INVALID_PARAMETER);
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  return (tusb_device_state_t) usbh_devices[dev_addr].state;
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}
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uint32_t tuh_device_get_mounted_class_flag(uint8_t dev_addr)
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{
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  return tuh_device_is_configured(dev_addr) ? usbh_devices[dev_addr].flag_supported_class : 0;
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}
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//--------------------------------------------------------------------+
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// CLASS-USBD API (don't require to verify parameters)
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//--------------------------------------------------------------------+
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tusb_error_t usbh_init(void)
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{
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  memclr_(usbh_devices, sizeof(usbh_device_info_t)*(CFG_TUSB_HOST_DEVICE_MAX+1));
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  TU_ASSERT_ERR( hcd_init() );
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  //------------- Enumeration & Reporter Task init -------------//
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  enum_queue_hdl = osal_queue_create( ENUM_QUEUE_DEPTH, sizeof(uint32_t) );
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  TU_ASSERT(enum_queue_hdl, TUSB_ERROR_OSAL_QUEUE_FAILED);
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  osal_task_create(usbh_enumeration_task, "usbh", 200, NULL, CFG_TUD_TASK_PRIO);
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  //------------- Semaphore, Mutex for Control Pipe -------------//
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  for(uint8_t i=0; i<CFG_TUSB_HOST_DEVICE_MAX+1; i++) // including address zero
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  {
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    usbh_device_info_t * const p_device = &usbh_devices[i];
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    p_device->control.sem_hdl = osal_semaphore_create(1, 0);
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    TU_ASSERT(p_device->control.sem_hdl, TUSB_ERROR_OSAL_SEMAPHORE_FAILED);
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    p_device->control.mutex_hdl = osal_mutex_create();
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    TU_ASSERT(p_device->control.mutex_hdl, TUSB_ERROR_OSAL_MUTEX_FAILED);
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  }
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  //------------- class init -------------//
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  for (uint8_t class_index = 1; class_index < USBH_CLASS_DRIVER_COUNT; class_index++)
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  {
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    if (usbh_class_drivers[class_index].init)
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    {
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      usbh_class_drivers[class_index].init();
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    }
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  }
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  return TUSB_ERROR_NONE;
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}
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//------------- USBH control transfer -------------//
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// function called within a task, requesting os blocking services, subtask input parameter must be static/global variables or constant
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tusb_error_t usbh_control_xfer_subtask(uint8_t dev_addr, uint8_t bmRequestType, uint8_t bRequest,
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                                       uint16_t wValue, uint16_t wIndex, uint16_t wLength, uint8_t* data)
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{
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  static tusb_error_t error; // FIXME [CMSIS-RTX] use svc for OS API, error value changed after mutex release at the end of function
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  OSAL_SUBTASK_BEGIN
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  osal_mutex_wait(usbh_devices[dev_addr].control.mutex_hdl, OSAL_TIMEOUT_NORMAL, &error);
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  STASK_ASSERT_ERR_HDLR(error, osal_mutex_release(usbh_devices[dev_addr].control.mutex_hdl));
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  usbh_devices[dev_addr].control.request = (tusb_control_request_t) {
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                                                  {.bmRequestType = bmRequestType},
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                                                  .bRequest      = bRequest,
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                                                  .wValue        = wValue,
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                                                  .wIndex        = wIndex,
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                                                  .wLength       = wLength
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                                           };
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#ifndef _TEST_
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  usbh_devices[dev_addr].control.pipe_status = 0;
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#else
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  usbh_devices[dev_addr].control.pipe_status = TUSB_EVENT_XFER_COMPLETE; // in Test project, mark as complete immediately
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#endif
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  error = hcd_pipe_control_xfer(dev_addr, &usbh_devices[dev_addr].control.request, data);
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  if ( TUSB_ERROR_NONE == error ) osal_semaphore_wait(usbh_devices[dev_addr].control.sem_hdl, OSAL_TIMEOUT_NORMAL, &error);
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  osal_mutex_release(usbh_devices[dev_addr].control.mutex_hdl);
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  STASK_ASSERT_ERR(error);
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  if (TUSB_EVENT_XFER_STALLED == usbh_devices[dev_addr].control.pipe_status) STASK_RETURN(TUSB_ERROR_USBH_XFER_STALLED);
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  if (TUSB_EVENT_XFER_ERROR   == usbh_devices[dev_addr].control.pipe_status) STASK_RETURN(TUSB_ERROR_USBH_XFER_FAILED);
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//  STASK_ASSERT_HDLR(TUSB_ERROR_NONE == error &&
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//                              TUSB_EVENT_XFER_COMPLETE == usbh_devices[dev_addr].control.pipe_status,
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//                              tuh_device_mount_failed_cb(TUSB_ERROR_USBH_MOUNT_DEVICE_NOT_RESPOND, NULL) );
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  OSAL_SUBTASK_END
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}
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tusb_error_t usbh_pipe_control_open(uint8_t dev_addr, uint8_t max_packet_size) ATTR_ALWAYS_INLINE;
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tusb_error_t usbh_pipe_control_open(uint8_t dev_addr, uint8_t max_packet_size)
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{
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  osal_semaphore_reset( usbh_devices[dev_addr].control.sem_hdl );
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  osal_mutex_reset( usbh_devices[dev_addr].control.mutex_hdl );
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  TU_ASSERT_ERR( hcd_pipe_control_open(dev_addr, max_packet_size) );
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  return TUSB_ERROR_NONE;
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}
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static inline tusb_error_t usbh_pipe_control_close(uint8_t dev_addr) ATTR_ALWAYS_INLINE;
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static inline tusb_error_t usbh_pipe_control_close(uint8_t dev_addr)
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{
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  TU_ASSERT_ERR( hcd_pipe_control_close(dev_addr) );
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  return TUSB_ERROR_NONE;
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}
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// TODO [USBH] unify pipe status get
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//tusb_interface_status_t usbh_pipe_status_get(pipe_handle_t pipe_hdl)
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//{
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//  return TUSB_INTERFACE_STATUS_BUSY;
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//}
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//--------------------------------------------------------------------+
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// USBH-HCD ISR/Callback API
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//--------------------------------------------------------------------+
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// interrupt caused by a TD (with IOC=1) in pipe of class class_code
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void usbh_xfer_isr(pipe_handle_t pipe_hdl, uint8_t class_code, tusb_event_t event, uint32_t xferred_bytes)
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{
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  uint8_t class_index = std_class_code_to_index(class_code);
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  if (TUSB_XFER_CONTROL == pipe_hdl.xfer_type)
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  {
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    usbh_devices[ pipe_hdl.dev_addr ].control.pipe_status   = event;
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//    usbh_devices[ pipe_hdl.dev_addr ].control.xferred_bytes = xferred_bytes; not yet neccessary
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    osal_semaphore_post( usbh_devices[ pipe_hdl.dev_addr ].control.sem_hdl );
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  }else if (usbh_class_drivers[class_index].isr)
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  {
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    usbh_class_drivers[class_index].isr(pipe_hdl, event, xferred_bytes);
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  }else
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  {
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    TU_ASSERT(false); // something wrong, no one claims the isr's source
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  }
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}
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void usbh_hub_port_plugged_isr(uint8_t hub_addr, uint8_t hub_port)
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{
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  usbh_enumerate_t enum_entry =
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  {
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      .core_id  = usbh_devices[hub_addr].core_id,
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      .hub_addr = hub_addr,
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      .hub_port = hub_port
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  };
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  osal_queue_send(enum_queue_hdl, &enum_entry);
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}
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void usbh_hcd_rhport_plugged_isr(uint8_t hostid)
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{
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  usbh_enumerate_t enum_entry =
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  {
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      .core_id  = hostid,
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      .hub_addr = 0,
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      .hub_port = 0
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  };
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  osal_queue_send(enum_queue_hdl, &enum_entry);
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}
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// a device unplugged on hostid, hub_addr, hub_port
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// return true if found and unmounted device, false if cannot find
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static void usbh_device_unplugged(uint8_t hostid, uint8_t hub_addr, uint8_t hub_port)
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{
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  bool is_found = false;
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  //------------- find the all devices (star-network) under port that is unplugged -------------//
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  for (uint8_t dev_addr = 0; dev_addr <= CFG_TUSB_HOST_DEVICE_MAX; dev_addr ++)
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  {
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    if (usbh_devices[dev_addr].core_id  == hostid   &&
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        (hub_addr == 0 || usbh_devices[dev_addr].hub_addr == hub_addr) && // hub_addr == 0 & hub_port == 0 means roothub
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        (hub_port == 0 || usbh_devices[dev_addr].hub_port == hub_port) &&
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        usbh_devices[dev_addr].state    != TUSB_DEVICE_STATE_UNPLUG)
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    {
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      // TODO Hub multiple level
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      for (uint8_t class_index = 1; class_index < USBH_CLASS_DRIVER_COUNT; class_index++)
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      {
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        if ((usbh_devices[dev_addr].flag_supported_class & BIT_(class_index)) &&
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            usbh_class_drivers[class_index].close)
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        {
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          usbh_class_drivers[class_index].close(dev_addr);
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        }
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      }
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      // TODO refractor
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      // set to REMOVING to allow HCD to clean up its cached data for this device
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      // HCD must set this device's state to TUSB_DEVICE_STATE_UNPLUG when done
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      usbh_devices[dev_addr].state = TUSB_DEVICE_STATE_REMOVING;
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      usbh_devices[dev_addr].flag_supported_class = 0;
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      usbh_pipe_control_close(dev_addr);
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      is_found = true;
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    }
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  }
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  if (is_found) hcd_port_unplug(usbh_devices[0].core_id); // TODO hack
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}
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void usbh_hcd_rhport_unplugged_isr(uint8_t hostid)
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{
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  usbh_enumerate_t enum_entry =
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  {
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      .core_id = hostid,
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      .hub_addr = 0,
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      .hub_port = 0
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  };
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  osal_queue_send(enum_queue_hdl, &enum_entry);
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}
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//--------------------------------------------------------------------+
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// ENUMERATION TASK
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//--------------------------------------------------------------------+
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static tusb_error_t enumeration_body_subtask(void);
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// To enable the TASK_ASSERT style (quick return on false condition) in a real RTOS, a task must act as a wrapper
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// and is used mainly to call subtasks. Within a subtask return statement can be called freely, the task with
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// forever loop cannot have any return at all.
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void usbh_enumeration_task(void* param)
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{
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  (void) param;
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  OSAL_TASK_BEGIN
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  enumeration_body_subtask();
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  OSAL_TASK_END
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}
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tusb_error_t enumeration_body_subtask(void)
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{
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  enum {
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    POWER_STABLE_DELAY = 500,
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    RESET_DELAY        = 200 // USB specs say only 50ms but many devices require much longer
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  };
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  tusb_error_t error;
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  usbh_enumerate_t enum_entry;
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  // for OSAL_NONE local variable won't retain value after blocking service sem_wait/queue_recv
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  static uint8_t new_addr;
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  static uint8_t configure_selected = 1; // TODO move
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  static uint8_t *p_desc = NULL; // TODO move
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  OSAL_SUBTASK_BEGIN
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  osal_queue_receive(enum_queue_hdl, &enum_entry, OSAL_TIMEOUT_WAIT_FOREVER, &error);
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  STASK_ASSERT_ERR(error);
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  usbh_devices[0].core_id  = enum_entry.core_id; // TODO refractor integrate to device_pool
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  usbh_devices[0].hub_addr = enum_entry.hub_addr;
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  usbh_devices[0].hub_port = enum_entry.hub_port;
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  usbh_devices[0].state    = TUSB_DEVICE_STATE_UNPLUG;
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  //------------- connected/disconnected directly with roothub -------------//
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  if ( usbh_devices[0].hub_addr == 0)
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  {
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    if( hcd_port_connect_status(usbh_devices[0].core_id) )
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    { // connection event
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      osal_task_delay(POWER_STABLE_DELAY); // wait until device is stable. Increase this if the first 8 bytes is failed to get
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      if ( !hcd_port_connect_status(usbh_devices[0].core_id) ) STASK_RETURN(TUSB_ERROR_NONE); // exit if device unplugged while delaying
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						|
 | 
						|
      hcd_port_reset( usbh_devices[0].core_id ); // port must be reset to have correct speed operation
 | 
						|
      osal_task_delay(RESET_DELAY);
 | 
						|
 | 
						|
      usbh_devices[0].speed = hcd_port_speed_get( usbh_devices[0].core_id );
 | 
						|
    }
 | 
						|
    else
 | 
						|
    { // disconnection event
 | 
						|
      usbh_device_unplugged(usbh_devices[0].core_id, 0, 0);
 | 
						|
      STASK_RETURN(TUSB_ERROR_NONE); // restart task
 | 
						|
    }
 | 
						|
  }
 | 
						|
  #if CFG_TUSB_HOST_HUB
 | 
						|
  //------------- connected/disconnected via hub -------------//
 | 
						|
  else
 | 
						|
  {
 | 
						|
    //------------- Get Port Status -------------//
 | 
						|
    STASK_INVOKE(
 | 
						|
        usbh_control_xfer_subtask( usbh_devices[0].hub_addr, bm_request_type(TUSB_DIR_IN, TUSB_REQ_TYPE_CLASS, TUSB_REQ_RCPT_OTHER),
 | 
						|
                                   HUB_REQUEST_GET_STATUS, 0, usbh_devices[0].hub_port,
 | 
						|
                                   4, enum_data_buffer ),
 | 
						|
        error
 | 
						|
    );
 | 
						|
//    STASK_ASSERT_ERR( error );
 | 
						|
    STASK_ASSERT_ERR_HDLR(error, hub_status_pipe_queue( usbh_devices[0].hub_addr) ); // TODO hub refractor
 | 
						|
 | 
						|
    // Acknowledge Port Connection Change
 | 
						|
    STASK_INVOKE( hub_port_clear_feature_subtask(usbh_devices[0].hub_addr, usbh_devices[0].hub_port, HUB_FEATURE_PORT_CONNECTION_CHANGE), error );
 | 
						|
 | 
						|
    hub_port_status_response_t * p_port_status;
 | 
						|
    p_port_status = ((hub_port_status_response_t *) enum_data_buffer);
 | 
						|
 | 
						|
    if ( ! p_port_status->status_change.connect_status )   STASK_RETURN(TUSB_ERROR_NONE); // only handle connection change
 | 
						|
 | 
						|
    if ( ! p_port_status->status_current.connect_status )
 | 
						|
    { // Disconnection event
 | 
						|
      usbh_device_unplugged(usbh_devices[0].core_id, usbh_devices[0].hub_addr, usbh_devices[0].hub_port);
 | 
						|
 | 
						|
      (void) hub_status_pipe_queue( usbh_devices[0].hub_addr ); // done with hub, waiting for next data on status pipe
 | 
						|
      STASK_RETURN(TUSB_ERROR_NONE); // restart task
 | 
						|
    }
 | 
						|
    else
 | 
						|
    { // Connection Event
 | 
						|
      STASK_INVOKE ( hub_port_reset_subtask(usbh_devices[0].hub_addr, usbh_devices[0].hub_port), error );
 | 
						|
//      STASK_ASSERT_ERR( error );
 | 
						|
      STASK_ASSERT_ERR_HDLR(error, hub_status_pipe_queue( usbh_devices[0].hub_addr) ); // TODO hub refractor
 | 
						|
 | 
						|
      usbh_devices[0].speed = hub_port_get_speed();
 | 
						|
 | 
						|
      // Acknowledge Port Reset Change
 | 
						|
      STASK_INVOKE( hub_port_clear_feature_subtask(usbh_devices[0].hub_addr, usbh_devices[0].hub_port, HUB_FEATURE_PORT_RESET_CHANGE), error );
 | 
						|
    }
 | 
						|
  }
 | 
						|
  #endif
 | 
						|
 | 
						|
  STASK_ASSERT_ERR( usbh_pipe_control_open(0, 8) );
 | 
						|
  usbh_devices[0].state = TUSB_DEVICE_STATE_ADDRESSED;
 | 
						|
 | 
						|
  //------------- Get first 8 bytes of device descriptor to get Control Endpoint Size -------------//
 | 
						|
  STASK_INVOKE(
 | 
						|
      usbh_control_xfer_subtask( 0, bm_request_type(TUSB_DIR_IN, TUSB_REQ_TYPE_STANDARD, TUSB_REQ_RCPT_DEVICE),
 | 
						|
                                 TUSB_REQ_GET_DESCRIPTOR, (TUSB_DESC_DEVICE << 8), 0,
 | 
						|
                                 8, enum_data_buffer ),
 | 
						|
      error
 | 
						|
  );
 | 
						|
 | 
						|
  //------------- Reset device again before Set Address -------------//
 | 
						|
  if (usbh_devices[0].hub_addr == 0)
 | 
						|
  { // connected directly to roothub
 | 
						|
    STASK_ASSERT_ERR(error); // TODO some slow device is observed to fail the very fist controller xfer, can try more times
 | 
						|
    hcd_port_reset( usbh_devices[0].core_id ); // reset port after 8 byte descriptor
 | 
						|
    osal_task_delay(RESET_DELAY);
 | 
						|
  }
 | 
						|
  #if CFG_TUSB_HOST_HUB
 | 
						|
  else
 | 
						|
  { // connected via a hub
 | 
						|
    STASK_ASSERT_ERR_HDLR(error, hub_status_pipe_queue( usbh_devices[0].hub_addr) ); // TODO hub refractor
 | 
						|
    STASK_INVOKE ( hub_port_reset_subtask(usbh_devices[0].hub_addr, usbh_devices[0].hub_port), error );
 | 
						|
 | 
						|
    if ( TUSB_ERROR_NONE == error )
 | 
						|
    { // Acknowledge Port Reset Change if Reset Successful
 | 
						|
      STASK_INVOKE( hub_port_clear_feature_subtask(usbh_devices[0].hub_addr, usbh_devices[0].hub_port, HUB_FEATURE_PORT_RESET_CHANGE), error );
 | 
						|
    }
 | 
						|
 | 
						|
    (void) hub_status_pipe_queue( usbh_devices[0].hub_addr ); // done with hub, waiting for next data on status pipe
 | 
						|
  }
 | 
						|
  #endif
 | 
						|
 | 
						|
  //------------- Set new address -------------//
 | 
						|
  new_addr = get_new_address();
 | 
						|
  STASK_ASSERT(new_addr <= CFG_TUSB_HOST_DEVICE_MAX); // TODO notify application we reach max devices
 | 
						|
 | 
						|
  STASK_INVOKE(
 | 
						|
    usbh_control_xfer_subtask( 0, bm_request_type(TUSB_DIR_OUT, TUSB_REQ_TYPE_STANDARD, TUSB_REQ_RCPT_DEVICE),
 | 
						|
                               TUSB_REQ_SET_ADDRESS, new_addr, 0,
 | 
						|
                               0, NULL ),
 | 
						|
    error
 | 
						|
  );
 | 
						|
  STASK_ASSERT_ERR(error);
 | 
						|
 | 
						|
  //------------- update port info & close control pipe of addr0 -------------//
 | 
						|
  usbh_devices[new_addr].core_id  = usbh_devices[0].core_id;
 | 
						|
  usbh_devices[new_addr].hub_addr = usbh_devices[0].hub_addr;
 | 
						|
  usbh_devices[new_addr].hub_port = usbh_devices[0].hub_port;
 | 
						|
  usbh_devices[new_addr].speed    = usbh_devices[0].speed;
 | 
						|
  usbh_devices[new_addr].state    = TUSB_DEVICE_STATE_ADDRESSED;
 | 
						|
 | 
						|
  usbh_pipe_control_close(0);
 | 
						|
  usbh_devices[0].state = TUSB_DEVICE_STATE_UNPLUG;
 | 
						|
 | 
						|
  // open control pipe for new address
 | 
						|
  STASK_ASSERT_ERR ( usbh_pipe_control_open(new_addr, ((tusb_desc_device_t*) enum_data_buffer)->bMaxPacketSize0 ) );
 | 
						|
 | 
						|
  //------------- Get full device descriptor -------------//
 | 
						|
  STASK_INVOKE(
 | 
						|
      usbh_control_xfer_subtask( new_addr, bm_request_type(TUSB_DIR_IN, TUSB_REQ_TYPE_STANDARD, TUSB_REQ_RCPT_DEVICE),
 | 
						|
                                 TUSB_REQ_GET_DESCRIPTOR, (TUSB_DESC_DEVICE << 8), 0,
 | 
						|
                                 18, enum_data_buffer ),
 | 
						|
      error
 | 
						|
  );
 | 
						|
  STASK_ASSERT_ERR(error);
 | 
						|
 | 
						|
  // update device info  TODO alignment issue
 | 
						|
  usbh_devices[new_addr].vendor_id       = ((tusb_desc_device_t*) enum_data_buffer)->idVendor;
 | 
						|
  usbh_devices[new_addr].product_id      = ((tusb_desc_device_t*) enum_data_buffer)->idProduct;
 | 
						|
  usbh_devices[new_addr].configure_count = ((tusb_desc_device_t*) enum_data_buffer)->bNumConfigurations;
 | 
						|
 | 
						|
  configure_selected = get_configure_number_for_device((tusb_desc_device_t*) enum_data_buffer);
 | 
						|
  STASK_ASSERT(configure_selected <= usbh_devices[new_addr].configure_count); // TODO notify application when invalid configuration
 | 
						|
 | 
						|
  //------------- Get 9 bytes of configuration descriptor -------------//
 | 
						|
  STASK_INVOKE(
 | 
						|
      usbh_control_xfer_subtask( new_addr, bm_request_type(TUSB_DIR_IN, TUSB_REQ_TYPE_STANDARD, TUSB_REQ_RCPT_DEVICE),
 | 
						|
                                 TUSB_REQ_GET_DESCRIPTOR, (TUSB_DESC_CONFIGURATION << 8) | (configure_selected - 1), 0,
 | 
						|
                                 9, enum_data_buffer ),
 | 
						|
      error
 | 
						|
  );
 | 
						|
  STASK_ASSERT_ERR(error);
 | 
						|
  STASK_ASSERT_HDLR( CFG_TUSB_HOST_ENUM_BUFFER_SIZE >= ((tusb_desc_configuration_t*)enum_data_buffer)->wTotalLength,
 | 
						|
                            tuh_device_mount_failed_cb(TUSB_ERROR_USBH_MOUNT_CONFIG_DESC_TOO_LONG, NULL) );
 | 
						|
 | 
						|
  //------------- Get full configuration descriptor -------------//
 | 
						|
  STASK_INVOKE(
 | 
						|
      usbh_control_xfer_subtask( new_addr, bm_request_type(TUSB_DIR_IN, TUSB_REQ_TYPE_STANDARD, TUSB_REQ_RCPT_DEVICE),
 | 
						|
                                 TUSB_REQ_GET_DESCRIPTOR, (TUSB_DESC_CONFIGURATION << 8) | (configure_selected - 1), 0,
 | 
						|
                                 CFG_TUSB_HOST_ENUM_BUFFER_SIZE, enum_data_buffer ),
 | 
						|
      error
 | 
						|
  );
 | 
						|
  STASK_ASSERT_ERR(error);
 | 
						|
 | 
						|
  // update configuration info
 | 
						|
  usbh_devices[new_addr].interface_count = ((tusb_desc_configuration_t*) enum_data_buffer)->bNumInterfaces;
 | 
						|
 | 
						|
  //------------- Set Configure -------------//
 | 
						|
  STASK_INVOKE(
 | 
						|
    usbh_control_xfer_subtask( new_addr, bm_request_type(TUSB_DIR_OUT, TUSB_REQ_TYPE_STANDARD, TUSB_REQ_RCPT_DEVICE),
 | 
						|
                               TUSB_REQ_SET_CONFIGURATION, configure_selected, 0,
 | 
						|
                               0, NULL ),
 | 
						|
    error
 | 
						|
  );
 | 
						|
  STASK_ASSERT_ERR(error);
 | 
						|
 | 
						|
  usbh_devices[new_addr].state = TUSB_DEVICE_STATE_CONFIGURED;
 | 
						|
 | 
						|
  //------------- TODO Get String Descriptors -------------//
 | 
						|
 | 
						|
  //------------- parse configuration & install drivers -------------//
 | 
						|
  p_desc = enum_data_buffer + sizeof(tusb_desc_configuration_t);
 | 
						|
 | 
						|
  // parse each interfaces
 | 
						|
  while( p_desc < enum_data_buffer + ((tusb_desc_configuration_t*)enum_data_buffer)->wTotalLength )
 | 
						|
  {
 | 
						|
    // skip until we see interface descriptor
 | 
						|
    if ( TUSB_DESC_INTERFACE != p_desc[DESCRIPTOR_OFFSET_TYPE] )
 | 
						|
    {
 | 
						|
      p_desc += p_desc[DESCRIPTOR_OFFSET_LENGTH]; // skip the descriptor, increase by the descriptor's length
 | 
						|
    }else
 | 
						|
    {
 | 
						|
      static uint8_t class_index; // has to be static as it is used to call class's open_subtask
 | 
						|
 | 
						|
      class_index = std_class_code_to_index( ((tusb_desc_interface_t*) p_desc)->bInterfaceClass );
 | 
						|
      STASK_ASSERT( class_index != 0 ); // class_index == 0 means corrupted data, abort enumeration
 | 
						|
 | 
						|
      if (usbh_class_drivers[class_index].open_subtask &&
 | 
						|
          !(class_index == TUSB_CLASS_HUB && usbh_devices[new_addr].hub_addr != 0))
 | 
						|
      { // supported class, TODO Hub disable multiple level
 | 
						|
        static uint16_t length;
 | 
						|
        length = 0;
 | 
						|
 | 
						|
        STASK_INVOKE ( // parameters in task/sub_task must be static storage (static or global)
 | 
						|
            usbh_class_drivers[class_index].open_subtask( new_addr, (tusb_desc_interface_t*) p_desc, &length ),
 | 
						|
            error
 | 
						|
        );
 | 
						|
 | 
						|
        if (error == TUSB_ERROR_NONE)
 | 
						|
        {
 | 
						|
          STASK_ASSERT( length >= sizeof(tusb_desc_interface_t) );
 | 
						|
          usbh_devices[new_addr].flag_supported_class |= BIT_(class_index);
 | 
						|
          p_desc += length;
 | 
						|
        }else  // Interface open failed, for example a subclass is not supported
 | 
						|
        {
 | 
						|
          p_desc += p_desc[DESCRIPTOR_OFFSET_LENGTH]; // skip this interface, the rest will be skipped by the above loop
 | 
						|
        }
 | 
						|
      } else // unsupported class (not enable or yet implemented)
 | 
						|
      {
 | 
						|
        p_desc += p_desc[DESCRIPTOR_OFFSET_LENGTH]; // skip this interface, the rest will be skipped by the above loop
 | 
						|
      }
 | 
						|
    }
 | 
						|
  }
 | 
						|
 | 
						|
  tuh_device_mount_succeed_cb(new_addr);
 | 
						|
 | 
						|
  OSAL_SUBTASK_END
 | 
						|
}
 | 
						|
 | 
						|
//--------------------------------------------------------------------+
 | 
						|
// REPORTER TASK & ITS DATA
 | 
						|
//--------------------------------------------------------------------+
 | 
						|
 | 
						|
 | 
						|
 | 
						|
 | 
						|
 | 
						|
//--------------------------------------------------------------------+
 | 
						|
// INTERNAL HELPER
 | 
						|
//--------------------------------------------------------------------+
 | 
						|
static inline uint8_t get_new_address(void)
 | 
						|
{
 | 
						|
  uint8_t addr;
 | 
						|
  for (addr=1; addr <= CFG_TUSB_HOST_DEVICE_MAX; addr++)
 | 
						|
  {
 | 
						|
    if (usbh_devices[addr].state == TUSB_DEVICE_STATE_UNPLUG)
 | 
						|
      break;
 | 
						|
  }
 | 
						|
  return addr;
 | 
						|
}
 | 
						|
 | 
						|
static inline uint8_t get_configure_number_for_device(tusb_desc_device_t* dev_desc)
 | 
						|
{
 | 
						|
  uint8_t config_num = 1;
 | 
						|
 | 
						|
  // invoke callback to ask user which configuration to select
 | 
						|
  if (tuh_device_attached_cb)
 | 
						|
  {
 | 
						|
    config_num = min8_of(1, tuh_device_attached_cb(dev_desc) );
 | 
						|
  }
 | 
						|
 | 
						|
  return config_num;
 | 
						|
}
 | 
						|
 | 
						|
#endif
 |