431 lines
		
	
	
		
			16 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			431 lines
		
	
	
		
			16 KiB
		
	
	
	
		
			C
		
	
	
	
	
	
| /**************************************************************************/
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| /*!
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|     @file     msc_host.c
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|     @author   hathach (tinyusb.org)
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| 
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|     @section LICENSE
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| 
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|     Software License Agreement (BSD License)
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| 
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|     Copyright (c) 2013, hathach (tinyusb.org)
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|     All rights reserved.
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| 
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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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| 
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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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| 
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|     This file is part of the tinyusb stack.
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| */
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| /**************************************************************************/
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| 
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| #include "tusb_option.h"
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| 
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| #if MODE_HOST_SUPPORTED & TUSB_CFG_HOST_MSC
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| 
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| #define _TINY_USB_SOURCE_FILE_
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| 
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| //--------------------------------------------------------------------+
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| // INCLUDE
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| //--------------------------------------------------------------------+
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| #include "common/tusb_common.h"
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| #include "msc_host.h"
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| 
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| //--------------------------------------------------------------------+
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| // MACRO CONSTANT TYPEDEF
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| //--------------------------------------------------------------------+
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| TUSB_CFG_ATTR_USBRAM STATIC_VAR msch_interface_t msch_data[TUSB_CFG_HOST_DEVICE_MAX];
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| 
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| //------------- Initalization Data -------------//
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| static osal_semaphore_t msch_sem_hdl;
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| 
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| // buffer used to read scsi information when mounted, largest response data currently is inquiry
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| TUSB_CFG_ATTR_USBRAM ATTR_ALIGNED(4) STATIC_VAR uint8_t msch_buffer[sizeof(scsi_inquiry_data_t)];
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| 
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| //--------------------------------------------------------------------+
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| // INTERNAL OBJECT & FUNCTION DECLARATION
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| //--------------------------------------------------------------------+
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| 
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| //--------------------------------------------------------------------+
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| // PUBLIC API
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| //--------------------------------------------------------------------+
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| bool tuh_msc_is_mounted(uint8_t dev_addr)
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| {
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|   return  tuh_device_is_configured(dev_addr) && // is configured can be omitted
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|           msch_data[dev_addr-1].is_initialized;
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| }
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| 
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| bool tuh_msc_is_busy(uint8_t dev_addr)
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| {
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|   return  msch_data[dev_addr-1].is_initialized &&
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|           hcd_pipe_is_busy(msch_data[dev_addr-1].bulk_in);
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| }
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| 
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| uint8_t const* tuh_msc_get_vendor_name(uint8_t dev_addr)
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| {
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|   return msch_data[dev_addr-1].is_initialized ? msch_data[dev_addr-1].vendor_id : NULL;
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| }
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| 
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| uint8_t const* tuh_msc_get_product_name(uint8_t dev_addr)
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| {
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|   return msch_data[dev_addr-1].is_initialized ? msch_data[dev_addr-1].product_id : NULL;
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| }
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| 
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| tusb_error_t tuh_msc_get_capacity(uint8_t dev_addr, uint32_t* p_last_lba, uint32_t* p_block_size)
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| {
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|   if ( !msch_data[dev_addr-1].is_initialized )   return TUSB_ERROR_MSCH_DEVICE_NOT_MOUNTED;
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|   ASSERT(p_last_lba != NULL && p_block_size != NULL, TUSB_ERROR_INVALID_PARA);
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| 
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|   (*p_last_lba)   = msch_data[dev_addr-1].last_lba;
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|   (*p_block_size) = (uint32_t) msch_data[dev_addr-1].block_size;
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| 
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|   return TUSB_ERROR_NONE;
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| }
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| 
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| //--------------------------------------------------------------------+
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| // PUBLIC API: SCSI COMMAND
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| //--------------------------------------------------------------------+
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| static inline void msc_cbw_add_signature(msc_cmd_block_wrapper_t *p_cbw, uint8_t lun)
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| {
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|   p_cbw->signature  = MSC_CBW_SIGNATURE;
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|   p_cbw->tag        = 0xCAFECAFE;
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|   p_cbw->lun        = lun;
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| }
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| 
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| static tusb_error_t msch_command_xfer(msch_interface_t * p_msch, void* p_buffer) ATTR_WARN_UNUSED_RESULT;
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| static tusb_error_t msch_command_xfer(msch_interface_t * p_msch, void* p_buffer)
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| {
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|   if ( NULL != p_buffer)
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|   { // there is data phase
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|     if (p_msch->cbw.dir & TUSB_DIR_IN_MASK)
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|     {
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|       ASSERT_STATUS( hcd_pipe_xfer(p_msch->bulk_out, (uint8_t*) &p_msch->cbw, sizeof(msc_cmd_block_wrapper_t), false) );
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|       ASSERT_STATUS( hcd_pipe_queue_xfer(p_msch->bulk_in , p_buffer, p_msch->cbw.xfer_bytes) );
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|     }else
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|     {
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|       ASSERT_STATUS( hcd_pipe_queue_xfer(p_msch->bulk_out, (uint8_t*) &p_msch->cbw, sizeof(msc_cmd_block_wrapper_t)) );
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|       ASSERT_STATUS( hcd_pipe_xfer(p_msch->bulk_out , p_buffer, p_msch->cbw.xfer_bytes, false) );
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|     }
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|   }
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| 
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|   ASSERT_STATUS( hcd_pipe_xfer(p_msch->bulk_in , (uint8_t*) &p_msch->csw, sizeof(msc_cmd_status_wrapper_t), true) );
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| 
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|   return TUSB_ERROR_NONE;
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| }
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| 
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| tusb_error_t tusbh_msc_inquiry(uint8_t dev_addr, uint8_t lun, uint8_t *p_data)
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| {
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|   msch_interface_t* p_msch = &msch_data[dev_addr-1];
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| 
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|   //------------- Command Block Wrapper -------------//
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|   msc_cbw_add_signature(&p_msch->cbw, lun);
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|   p_msch->cbw.xfer_bytes = sizeof(scsi_inquiry_data_t);
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|   p_msch->cbw.dir        = TUSB_DIR_IN_MASK;
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|   p_msch->cbw.cmd_len    = sizeof(scsi_inquiry_t);
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| 
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|   //------------- SCSI command -------------//
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|   scsi_inquiry_t cmd_inquiry =
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|   {
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|       .cmd_code     = SCSI_CMD_INQUIRY,
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|       .alloc_length = sizeof(scsi_inquiry_data_t)
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|   };
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| 
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|   memcpy(p_msch->cbw.command, &cmd_inquiry, p_msch->cbw.cmd_len);
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| 
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|   ASSERT_STATUS ( msch_command_xfer(p_msch, p_data) );
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| 
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|   return TUSB_ERROR_NONE;
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| }
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| 
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| tusb_error_t tusbh_msc_read_capacity10(uint8_t dev_addr, uint8_t lun, uint8_t *p_data)
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| {
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|   msch_interface_t* p_msch = &msch_data[dev_addr-1];
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| 
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|   //------------- Command Block Wrapper -------------//
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|   msc_cbw_add_signature(&p_msch->cbw, lun);
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|   p_msch->cbw.xfer_bytes = sizeof(scsi_read_capacity10_data_t);
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|   p_msch->cbw.dir        = TUSB_DIR_IN_MASK;
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|   p_msch->cbw.cmd_len    = sizeof(scsi_read_capacity10_t);
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| 
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|   //------------- SCSI command -------------//
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|   scsi_read_capacity10_t cmd_read_capacity10 =
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|   {
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|       .cmd_code                 = SCSI_CMD_READ_CAPACITY_10,
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|       .lba                      = 0,
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|       .partial_medium_indicator = 0
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|   };
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| 
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|   memcpy(p_msch->cbw.command, &cmd_read_capacity10, p_msch->cbw.cmd_len);
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| 
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|   ASSERT_STATUS ( msch_command_xfer(p_msch, p_data) );
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| 
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|   return TUSB_ERROR_NONE;
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| }
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| 
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| tusb_error_t tuh_msc_request_sense(uint8_t dev_addr, uint8_t lun, uint8_t *p_data)
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| {
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|   (void) lun; // TODO [MSCH] multiple lun support
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| 
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|   msch_interface_t* p_msch = &msch_data[dev_addr-1];
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| 
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|   //------------- Command Block Wrapper -------------//
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|   p_msch->cbw.xfer_bytes = 18;
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|   p_msch->cbw.dir        = TUSB_DIR_IN_MASK;
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|   p_msch->cbw.cmd_len    = sizeof(scsi_request_sense_t);
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| 
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|   //------------- SCSI command -------------//
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|   scsi_request_sense_t cmd_request_sense =
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|   {
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|       .cmd_code     = SCSI_CMD_REQUEST_SENSE,
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|       .alloc_length = 18
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|   };
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| 
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|   memcpy(p_msch->cbw.command, &cmd_request_sense, p_msch->cbw.cmd_len);
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| 
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|   ASSERT_STATUS ( msch_command_xfer(p_msch, p_data) );
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| 
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|   return TUSB_ERROR_NONE;
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| }
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| 
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| tusb_error_t tuh_msc_test_unit_ready(uint8_t dev_addr, uint8_t lun,  msc_cmd_status_wrapper_t * p_csw)
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| {
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|   msch_interface_t* p_msch = &msch_data[dev_addr-1];
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| 
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|   //------------- Command Block Wrapper -------------//
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|   msc_cbw_add_signature(&p_msch->cbw, lun);
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| 
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|   p_msch->cbw.xfer_bytes = 0; // Number of bytes
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|   p_msch->cbw.dir        = TUSB_DIR_OUT;
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|   p_msch->cbw.cmd_len    = sizeof(scsi_test_unit_ready_t);
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| 
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|   //------------- SCSI command -------------//
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|   scsi_test_unit_ready_t cmd_test_unit_ready =
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|   {
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|       .cmd_code = SCSI_CMD_TEST_UNIT_READY,
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|       .lun      = lun // according to wiki
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|   };
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| 
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|   memcpy(p_msch->cbw.command, &cmd_test_unit_ready, p_msch->cbw.cmd_len);
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| 
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|   // TODO MSCH refractor test uinit ready
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|   ASSERT_STATUS( hcd_pipe_xfer(p_msch->bulk_out, (uint8_t*) &p_msch->cbw, sizeof(msc_cmd_block_wrapper_t), false) );
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|   ASSERT_STATUS( hcd_pipe_xfer(p_msch->bulk_in , (uint8_t*) p_csw, sizeof(msc_cmd_status_wrapper_t), true) );
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| 
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|   return TUSB_ERROR_NONE;
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| }
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| 
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| tusb_error_t  tuh_msc_read10(uint8_t dev_addr, uint8_t lun, void * p_buffer, uint32_t lba, uint16_t block_count)
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| {
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|   msch_interface_t* p_msch = &msch_data[dev_addr-1];
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| 
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|   //------------- Command Block Wrapper -------------//
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|   msc_cbw_add_signature(&p_msch->cbw, lun);
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| 
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|   p_msch->cbw.xfer_bytes = p_msch->block_size*block_count; // Number of bytes
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|   p_msch->cbw.dir        = TUSB_DIR_IN_MASK;
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|   p_msch->cbw.cmd_len    = sizeof(scsi_read10_t);
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| 
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|   //------------- SCSI command -------------//
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|   scsi_read10_t cmd_read10 =
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|   {
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|       .cmd_code    = SCSI_CMD_READ_10,
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|       .lba         = __n2be(lba),
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|       .block_count = u16_le2be(block_count)
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|   };
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| 
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|   memcpy(p_msch->cbw.command, &cmd_read10, p_msch->cbw.cmd_len);
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| 
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|   ASSERT_STATUS ( msch_command_xfer(p_msch, p_buffer));
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| 
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|   return TUSB_ERROR_NONE;
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| }
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| 
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| tusb_error_t tuh_msc_write10(uint8_t dev_addr, uint8_t lun, void const * p_buffer, uint32_t lba, uint16_t block_count)
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| {
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|   msch_interface_t* p_msch = &msch_data[dev_addr-1];
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| 
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|   //------------- Command Block Wrapper -------------//
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|   msc_cbw_add_signature(&p_msch->cbw, lun);
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| 
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|   p_msch->cbw.xfer_bytes = p_msch->block_size*block_count; // Number of bytes
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|   p_msch->cbw.dir        = TUSB_DIR_OUT;
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|   p_msch->cbw.cmd_len    = sizeof(scsi_write10_t);
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| 
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|   //------------- SCSI command -------------//
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|   scsi_write10_t cmd_write10 =
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|   {
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|       .cmd_code    = SCSI_CMD_WRITE_10,
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|       .lba         = __n2be(lba),
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|       .block_count = u16_le2be(block_count)
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|   };
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| 
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|   memcpy(p_msch->cbw.command, &cmd_write10, p_msch->cbw.cmd_len);
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| 
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|   ASSERT_STATUS ( msch_command_xfer(p_msch, (void*) p_buffer));
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| 
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|   return TUSB_ERROR_NONE;
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| }
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| 
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| //--------------------------------------------------------------------+
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| // CLASS-USBH API (don't require to verify parameters)
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| //--------------------------------------------------------------------+
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| void msch_init(void)
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| {
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|   memclr_(msch_data, sizeof(msch_interface_t)*TUSB_CFG_HOST_DEVICE_MAX);
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|   msch_sem_hdl = osal_semaphore_create(1, 0);
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| }
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| 
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| tusb_error_t msch_open_subtask(uint8_t dev_addr, tusb_descriptor_interface_t const *p_interface_desc, uint16_t *p_length)
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| {
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|   tusb_error_t error;
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| 
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|   OSAL_SUBTASK_BEGIN
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| 
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|   if (! ( MSC_SUBCLASS_SCSI == p_interface_desc->bInterfaceSubClass &&
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|           MSC_PROTOCOL_BOT  == p_interface_desc->bInterfaceProtocol ) )
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|   {
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|     return TUSB_ERROR_MSC_UNSUPPORTED_PROTOCOL;
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|   }
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| 
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|   //------------- Open Data Pipe -------------//
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|   tusb_descriptor_endpoint_t const *p_endpoint;
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|   p_endpoint = (tusb_descriptor_endpoint_t const *) descriptor_next( (uint8_t const*) p_interface_desc );
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| 
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|   for(uint32_t i=0; i<2; i++)
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|   {
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|     SUBTASK_ASSERT(TUSB_DESC_ENDPOINT == p_endpoint->bDescriptorType);
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|     SUBTASK_ASSERT(TUSB_XFER_BULK == p_endpoint->bmAttributes.xfer);
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| 
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|     pipe_handle_t * p_pipe_hdl =  ( p_endpoint->bEndpointAddress &  TUSB_DIR_IN_MASK ) ?
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|         &msch_data[dev_addr-1].bulk_in : &msch_data[dev_addr-1].bulk_out;
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| 
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|     (*p_pipe_hdl) = hcd_pipe_open(dev_addr, p_endpoint, TUSB_CLASS_MSC);
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|     SUBTASK_ASSERT( pipehandle_is_valid(*p_pipe_hdl) );
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| 
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|     p_endpoint = (tusb_descriptor_endpoint_t const *) descriptor_next( (uint8_t const*)  p_endpoint );
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|   }
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| 
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|   msch_data[dev_addr-1].interface_number = p_interface_desc->bInterfaceNumber;
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|   (*p_length) += sizeof(tusb_descriptor_interface_t) + 2*sizeof(tusb_descriptor_endpoint_t);
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| 
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| 
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|   //------------- Get Max Lun -------------//
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|   OSAL_SUBTASK_INVOKED(
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|     usbh_control_xfer_subtask( dev_addr, bm_request_type(TUSB_DIR_IN, TUSB_REQ_TYPE_CLASS, TUSB_REQ_RCPT_INTERFACE),
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|                                MSC_REQUEST_GET_MAX_LUN, 0, msch_data[dev_addr-1].interface_number,
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|                                1, msch_buffer ),
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|     error
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|   );
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| 
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|   SUBTASK_ASSERT( TUSB_ERROR_NONE == error /* && TODO STALL means zero */);
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|   msch_data[dev_addr-1].max_lun = msch_buffer[0];
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| 
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| #if 0
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|   //------------- Reset -------------//
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|   OSAL_SUBTASK_INVOKED(
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|     usbh_control_xfer_subtask( dev_addr, bm_request_type(TUSB_DIR_OUT, TUSB_REQ_TYPE_CLASS, TUSB_REQ_RCPT_INTERFACE),
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|                                MSC_REQUEST_RESET, 0, msch_data[dev_addr-1].interface_number,
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|                                0, NULL ),
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|     error
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|   );
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| #endif
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| 
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|   enum { SCSI_XFER_TIMEOUT = 2000 };
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|   //------------- SCSI Inquiry -------------//
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|   tusbh_msc_inquiry(dev_addr, 0, msch_buffer);
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|   osal_semaphore_wait(msch_sem_hdl, SCSI_XFER_TIMEOUT, &error);
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|   SUBTASK_ASSERT_STATUS(error);
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| 
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|   memcpy(msch_data[dev_addr-1].vendor_id , ((scsi_inquiry_data_t*) msch_buffer)->vendor_id , 8);
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|   memcpy(msch_data[dev_addr-1].product_id, ((scsi_inquiry_data_t*) msch_buffer)->product_id, 16);
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| 
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|   //------------- SCSI Read Capacity 10 -------------//
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|   tusbh_msc_read_capacity10(dev_addr, 0, msch_buffer);
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|   osal_semaphore_wait(msch_sem_hdl, SCSI_XFER_TIMEOUT, &error);
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|   SUBTASK_ASSERT_STATUS(error);
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| 
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|   // NOTE: my toshiba thumb-drive stall the first Read Capacity and require the sequence
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|   // Read Capacity --> Stalled --> Clear Stall --> Request Sense --> Read Capacity (2) to work
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|   if ( hcd_pipe_is_stalled(msch_data[dev_addr-1].bulk_in) )
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|   { // clear stall TODO abstract clear stall function
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|     OSAL_SUBTASK_INVOKED(
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|       usbh_control_xfer_subtask( dev_addr, bm_request_type(TUSB_DIR_OUT, TUSB_REQ_TYPE_STANDARD, TUSB_REQ_RCPT_ENDPOINT),
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|                                  TUSB_REQ_CLEAR_FEATURE, 0, hcd_pipe_get_endpoint_addr(msch_data[dev_addr-1].bulk_in),
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|                                  0, NULL ),
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|       error
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|     );
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|     SUBTASK_ASSERT_STATUS(error);
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| 
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|     hcd_pipe_clear_stall(msch_data[dev_addr-1].bulk_in);
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|     osal_semaphore_wait(msch_sem_hdl, SCSI_XFER_TIMEOUT, &error); // wait for SCSI status
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|     SUBTASK_ASSERT_STATUS(error);
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| 
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|     //------------- SCSI Request Sense -------------//
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|     (void) tuh_msc_request_sense(dev_addr, 0, msch_buffer);
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|     osal_semaphore_wait(msch_sem_hdl, SCSI_XFER_TIMEOUT, &error);
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|     SUBTASK_ASSERT_STATUS(error);
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| 
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|     //------------- Re-read SCSI Read Capactity -------------//
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|     tusbh_msc_read_capacity10(dev_addr, 0, msch_buffer);
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|     osal_semaphore_wait(msch_sem_hdl, SCSI_XFER_TIMEOUT, &error);
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|     SUBTASK_ASSERT_STATUS(error);
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|   }
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| 
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|   msch_data[dev_addr-1].last_lba   = __be2n( ((scsi_read_capacity10_data_t*)msch_buffer)->last_lba );
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|   msch_data[dev_addr-1].block_size = (uint16_t) __be2n( ((scsi_read_capacity10_data_t*)msch_buffer)->block_size );
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| 
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|   msch_data[dev_addr-1].is_initialized = true;
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|   tuh_msc_mounted_cb(dev_addr);
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| 
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|   OSAL_SUBTASK_END
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| }
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| 
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| void msch_isr(pipe_handle_t pipe_hdl, tusb_event_t event, uint32_t xferred_bytes)
 | |
| {
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|   if ( pipehandle_is_equal(pipe_hdl, msch_data[pipe_hdl.dev_addr-1].bulk_in) )
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|   {
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|     if (msch_data[pipe_hdl.dev_addr-1].is_initialized)
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|     {
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|       tuh_msc_isr(pipe_hdl.dev_addr, event, xferred_bytes);
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|     }else
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|     { // still initializing under open subtask
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|       osal_semaphore_post(msch_sem_hdl);
 | |
|     }
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|   }
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| }
 | |
| 
 | |
| void msch_close(uint8_t dev_addr)
 | |
| {
 | |
|   (void) hcd_pipe_close(msch_data[dev_addr-1].bulk_in);
 | |
|   (void) hcd_pipe_close(msch_data[dev_addr-1].bulk_out);
 | |
| 
 | |
|   memclr_(&msch_data[dev_addr-1], sizeof(msch_interface_t));
 | |
|   osal_semaphore_reset(msch_sem_hdl);
 | |
| 
 | |
|   tuh_msc_unmounted_cb(dev_addr); // invoke Application Callback
 | |
| }
 | |
| 
 | |
| //--------------------------------------------------------------------+
 | |
| // INTERNAL & HELPER
 | |
| //--------------------------------------------------------------------+
 | |
| 
 | |
| 
 | |
| #endif
 | 
