1727 lines
47 KiB
C
1727 lines
47 KiB
C
/*
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* Copyright (c) 2006-2023, RT-Thread Development Team
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*
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* SPDX-License-Identifier: Apache-2.0
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*
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* Change Logs:
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* Date Author Notes
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* 2012-10-01 Yi Qiu first version
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* 2012-11-25 Heyuanjie87 reduce the memory consumption
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* 2012-12-09 Heyuanjie87 change function and endpoint handler
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* 2013-07-25 Yi Qiu update for USB CV test
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*/
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#include <rtthread.h>
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#include "include/rttusb_device.h"
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#include "mstorage.h"
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#ifdef RT_USB_DEVICE_MSTORAGE
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#ifdef USBDISK
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#include "usbd_mass_speed_optimize.h"
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//通过宏PINGPANG_BUF_EN决定是否打开usbd mass读写速度优化的线程使能(sram使用空间增加),默认打开
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#if USBDISK == 1
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#define RT_USE_UDISK_DEVICE (&sd_udisk) /* sd u盘:sd_udisk */
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#elif USBDISK == 2
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#define RT_USE_UDISK_DEVICE (&flash_udisk) /* flash u盘:flash_udisk */
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#elif USBDISK == 3
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#define RT_USE_UDISK_DEVICE (&sram_udisk) /* sram u盘:sram_udisk */
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#else
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#define RT_USE_UDISK_DEVICE RT_NULL
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#endif
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#else
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#define PINGPANG_BUF_EN 0
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#define RT_USE_UDISK_DEVICE (&sram_udisk) /* sram u盘:sram_udisk */
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#endif
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#define SRAM_UDISK_EN 0
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#define UDISK_READONLY 0 // 0:读写,1:只读
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//自定义
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typedef int (*udisk_read)(uint32 lba,uint32 count,uint8* buf);
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typedef int (*udisk_write)(uint32 lba,uint32 count,uint8* buf);
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typedef uint8_t (*udisk_get_status)(void);
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typedef uint32_t (*udisk_get_cap)();
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typedef uint32_t (*udisk_get_sector_size)();
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struct udisk_priv_func_s
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{
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udisk_get_sector_size u_get_sector_size; //扇区的大小
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udisk_read u_read;
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udisk_write u_write;
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udisk_get_status u_get_status; //这个现在只是判断是否存在
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udisk_get_cap u_get_cap;
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};
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//如果有sd卡,注册sd函数接口
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#if SDH_EN == 1
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#include "lib/sdhost/sdhost.h"
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int usb_sd_scsi_write(uint32 lba, uint32 count, uint8* buf);
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int usb_sd_scsi_read(uint32 lba, uint32 count, uint8* buf);
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uint8_t get_sd_status2(void);
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uint32 get_sd_cap() ;
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uint32_t get_sd_sector_size();
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const struct udisk_priv_func_s sd_udisk =
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{
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.u_get_sector_size = get_sd_sector_size,
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.u_read = usb_sd_scsi_read,
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.u_write = usb_sd_scsi_write,
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.u_get_status = get_sd_status2,
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.u_get_cap = get_sd_cap,
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};
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#endif
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#if FLASHDISK_EN == 1
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int flashdisk_usb_write(uint32_t sector,uint32_t count,uint8* buf);
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int flashdisk_usb_read(uint32_t sector,uint32_t count,uint8* buf);
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uint8_t flashdisk_get_status(void);
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uint32 flashdisk_get_sec_count() ;
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uint32_t flashdisk_get_sec_size();
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const struct udisk_priv_func_s flash_udisk =
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{
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.u_get_sector_size = flashdisk_get_sec_size,
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.u_read = flashdisk_usb_read,
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.u_write = flashdisk_usb_write,
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.u_get_status = flashdisk_get_status,
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.u_get_cap = flashdisk_get_sec_count,
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};
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#endif
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#if SRAM_UDISK_EN == 1
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#define USB_SRAM_MASS_CAPCITY (100*1024)
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static rt_uint8_t usb_sram_filesystem[USB_SRAM_MASS_CAPCITY];
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int sram_usb_write(uint32_t sector,uint32_t count,uint8* buf)
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{
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hw_memcpy(usb_sram_filesystem + sector * 512, buf, count * 512);
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return 0;
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}
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int sram_usb_read(uint32_t sector,uint32_t count,uint8* buf)
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{
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hw_memcpy(buf, usb_sram_filesystem + sector * 512, count * 512);
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return 0;
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}
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uint8_t sram_get_status(void)
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{
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return 0;
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}
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uint32 sram_get_sec_count()
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{
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return USB_SRAM_MASS_CAPCITY / 512;
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}
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uint32_t sram_get_sec_size()
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{
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return 512;
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}
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const struct udisk_priv_func_s sram_udisk =
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{
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.u_get_sector_size = sram_get_sec_size,
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.u_read = sram_usb_read,
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.u_write = sram_usb_write,
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.u_get_status = sram_get_status,
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.u_get_cap = sram_get_sec_count,
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};
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#endif
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#ifdef RT_USING_DFS_MNTTABLE
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#include "dfs_fs.h"
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#endif
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#define MSTRORAGE_INTF_STR_INDEX 11
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//#define DBG_TAG "usbdevice.mstorage"
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//#define DBG_LVL DBG_INFO
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//#include <rtdbg.h>
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static ufunction_t mstorage_func = RT_NULL;
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enum STAT
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{
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STAT_CBW,
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STAT_CMD,
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STAT_CSW,
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STAT_RECEIVE,
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STAT_SEND,
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};
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typedef enum
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{
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FIXED,
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COUNT,
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BLOCK_COUNT,
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}CB_SIZE_TYPE;
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typedef enum
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{
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DIR_IN,
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DIR_OUT,
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DIR_NONE,
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}CB_DIR;
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typedef rt_ssize_t (*cbw_handler)(ufunction_t func, ustorage_cbw_t cbw);
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struct scsi_cmd
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{
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rt_uint16_t cmd;
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cbw_handler handler;
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rt_size_t cmd_len;
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CB_SIZE_TYPE type;
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rt_size_t data_size;
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CB_DIR dir;
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};
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struct rt_device_blk_geometry
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{
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rt_uint64_t sector_count; /**< count of sectors */
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rt_uint32_t bytes_per_sector; /**< number of bytes per sector */
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rt_uint32_t block_size; /**< number of bytes to erase one block */
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};
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struct mstorage
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{
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struct ustorage_cbw *cbw;
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struct ustorage_csw csw_response;
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uep_t ep_in;
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uep_t ep_out;
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int status;
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int test_unit;
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rt_uint32_t cb_data_size;
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void *disk;
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rt_uint32_t block;
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rt_int32_t count;
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rt_int32_t size;
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struct scsi_cmd* processing;
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struct rt_device_blk_geometry geometry;
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const struct udisk_priv_func_s *udisk_func;
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#if PINGPANG_BUF_EN
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rt_uint32_t multi_sector_en;
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rt_uint32_t read_calc_optimize_sec;
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rt_uint32_t write_calc_optimize_sec;
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struct usbd_mass_speed_info udisk_speed_info;
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#endif
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};
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rt_align(4)
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static struct udevice_descriptor dev_desc =
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{
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USB_DESC_LENGTH_DEVICE, //bLength;
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USB_DESC_TYPE_DEVICE, //type;
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USB_BCD_VERSION, //bcdUSB;
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0, //bDeviceClass;
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0, //bDeviceSubClass;
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0, //bDeviceProtocol;
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0x40, //bMaxPacketSize0;
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_VENDOR_ID, //idVendor;
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_PRODUCT_ID, //idProduct;
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0x110, //bcdDevice;
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USB_STRING_MANU_INDEX, //iManufacturer;
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USB_STRING_PRODUCT_INDEX, //iProduct;
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USB_STRING_SERIAL_INDEX, //iSerialNumber;
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USB_DYNAMIC, //bNumConfigurations;
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};
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//FS and HS needed
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rt_align(4)
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static struct usb_qualifier_descriptor dev_qualifier =
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{
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sizeof(dev_qualifier), //bLength
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USB_DESC_TYPE_DEVICEQUALIFIER, //bDescriptorType
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0x0200, //bcdUSB
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USB_CLASS_MASS_STORAGE, //bDeviceClass
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0x06, //bDeviceSubClass
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0x50, //bDeviceProtocol
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64, //bMaxPacketSize0
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0x01, //bNumConfigurations
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0,
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};
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rt_align(4)
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const static struct umass_descriptor _mass_desc =
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{
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#ifdef RT_USB_DEVICE_COMPOSITE
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/* Interface Association Descriptor */
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{
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USB_DESC_LENGTH_IAD,
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USB_DESC_TYPE_IAD,
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USB_DYNAMIC,
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0x01,
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USB_CLASS_MASS_STORAGE,
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0x06,
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0x50,
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0x00,
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},
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#endif
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{
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USB_DESC_LENGTH_INTERFACE, //bLength;
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USB_DESC_TYPE_INTERFACE, //type;
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USB_DYNAMIC, //bInterfaceNumber;
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0x00, //bAlternateSetting;
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0x02, //bNumEndpoints
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USB_CLASS_MASS_STORAGE, //bInterfaceClass;
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0x06, //bInterfaceSubClass;
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0x50, //bInterfaceProtocol;
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#ifdef RT_USB_DEVICE_COMPOSITE
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MSTRORAGE_INTF_STR_INDEX,
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#else
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0x00, //iInterface;
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#endif
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},
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{
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USB_DESC_LENGTH_ENDPOINT, //bLength;
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USB_DESC_TYPE_ENDPOINT, //type;
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USB_DYNAMIC | USB_DIR_OUT, //bEndpointAddress;
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USB_EP_ATTR_BULK, //bmAttributes;
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USB_DYNAMIC, //wMaxPacketSize;
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0x00, //bInterval;
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},
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{
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USB_DESC_LENGTH_ENDPOINT, //bLength;
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USB_DESC_TYPE_ENDPOINT, //type;
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USB_DYNAMIC | USB_DIR_IN, //bEndpointAddress;
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USB_EP_ATTR_BULK, //bmAttributes;
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USB_DYNAMIC, //wMaxPacketSize;
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0x00, //bInterval;
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},
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};
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rt_align(4)
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const static char* _ustring[] =
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{
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"Language",
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"RT-Thread Team.",
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"RTT Mass Storage",
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"320219198301",
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"Configuration",
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"Interface",
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};
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static rt_ssize_t _test_unit_ready(ufunction_t func, ustorage_cbw_t cbw);
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static rt_ssize_t _request_sense(ufunction_t func, ustorage_cbw_t cbw);
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static rt_ssize_t _inquiry_cmd(ufunction_t func, ustorage_cbw_t cbw);
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static rt_ssize_t _allow_removal(ufunction_t func, ustorage_cbw_t cbw);
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static rt_ssize_t _start_stop(ufunction_t func, ustorage_cbw_t cbw);
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static rt_ssize_t _mode_sense_6(ufunction_t func, ustorage_cbw_t cbw);
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static rt_ssize_t _read_capacities(ufunction_t func, ustorage_cbw_t cbw);
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static rt_ssize_t _read_capacity(ufunction_t func, ustorage_cbw_t cbw);
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static rt_ssize_t _read_10(ufunction_t func, ustorage_cbw_t cbw);
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static rt_ssize_t _write_10(ufunction_t func, ustorage_cbw_t cbw);
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static rt_ssize_t _verify_10(ufunction_t func, ustorage_cbw_t cbw);
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static rt_ssize_t _mode_sense_10(ufunction_t func, ustorage_cbw_t cbw);
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rt_align(4)
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static struct scsi_cmd cmd_data[] =
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{
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{SCSI_TEST_UNIT_READY, _test_unit_ready, 6, FIXED, 0, DIR_NONE},
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{SCSI_REQUEST_SENSE, _request_sense, 6, COUNT, 0, DIR_IN},
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{SCSI_INQUIRY_CMD, _inquiry_cmd, 6, COUNT, 0, DIR_IN},
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{SCSI_ALLOW_REMOVAL, _allow_removal, 6, FIXED, 0, DIR_NONE},
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{SCSI_MODE_SENSE_6, _mode_sense_6, 6, COUNT, 0, DIR_IN},
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{SCSI_START_STOP, _start_stop, 6, FIXED, 0, DIR_NONE},
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{SCSI_READ_CAPACITIES, _read_capacities, 10, COUNT, 0, DIR_NONE},
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{SCSI_READ_CAPACITY, _read_capacity, 10, FIXED, 8, DIR_IN},
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{SCSI_READ_10, _read_10, 10, BLOCK_COUNT, 0, DIR_IN},
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{SCSI_WRITE_10, _write_10, 10, BLOCK_COUNT, 0, DIR_OUT},
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{SCSI_VERIFY_10, _verify_10, 10, FIXED, 0, DIR_NONE},
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{SCSI_MODE_SENSE_10, _mode_sense_10, 10, COUNT, 0, DIR_IN},
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};
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static void _send_status(ufunction_t func)
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{
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struct mstorage *data;
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RT_ASSERT(func != RT_NULL);
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LOG_D("_send_status");
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data = (struct mstorage*)func->user_data;
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data->ep_in->request.buffer = (rt_uint8_t*)&data->csw_response;
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data->ep_in->request.size = SIZEOF_CSW;
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data->ep_in->request.req_type = UIO_REQUEST_WRITE;
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rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
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data->status = STAT_CSW;
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}
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static rt_ssize_t _test_unit_ready(ufunction_t func, ustorage_cbw_t cbw)
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{
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struct mstorage *data;
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RT_ASSERT(func != RT_NULL);
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RT_ASSERT(func->device != RT_NULL);
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LOG_D("_test_unit_ready");
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data = (struct mstorage*)func->user_data;
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data->csw_response.status = 0;
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if(data->test_unit || data->udisk_func->u_get_status())
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{
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data->csw_response.status = 1;
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}
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return 0;
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}
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static rt_ssize_t _allow_removal(ufunction_t func, ustorage_cbw_t cbw)
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{
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struct mstorage *data;
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RT_ASSERT(func != RT_NULL);
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RT_ASSERT(func->device != RT_NULL);
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LOG_D("_allow_removal");
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data = (struct mstorage*)func->user_data;
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data->csw_response.status = 0;
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return 0;
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}
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/**
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* This function will handle inquiry command request.
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*
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* @param func the usb function object.
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* @param cbw the command block wrapper.
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*
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* @return RT_EOK on successful.
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*/
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static rt_ssize_t _inquiry_cmd(ufunction_t func, ustorage_cbw_t cbw)
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{
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struct mstorage *data;
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rt_uint8_t *buf;
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RT_ASSERT(func != RT_NULL);
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RT_ASSERT(func->device != RT_NULL);
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RT_ASSERT(cbw != RT_NULL);
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LOG_D("_inquiry_cmd");
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data = (struct mstorage*)func->user_data;
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buf = data->ep_in->buffer;
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// RMB:Yes ANSI Version:4 ECMA Version:0 ISO Version:0 Response Data Format:SCSI-2
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*(rt_uint32_t*)&buf[0] = 0x0 | (0x80 << 8) | (0x04 << 16) | (0x02 << 24);
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*(rt_uint32_t*)&buf[4] = 31;
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rt_memset(&buf[8], 0x20, 28);
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rt_memcpy(&buf[8], "RTT", 3);
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rt_memcpy(&buf[16], "USB Disk", 8);
|
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|
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data->cb_data_size = MIN(data->cb_data_size, SIZEOF_INQUIRY_CMD);
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data->ep_in->request.buffer = buf;
|
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data->ep_in->request.size = data->cb_data_size;
|
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data->ep_in->request.req_type = UIO_REQUEST_WRITE;
|
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rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
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data->status = STAT_CMD;
|
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|
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return data->cb_data_size;
|
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}
|
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|
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/**
|
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* This function will handle sense request.
|
||
*
|
||
* @param func the usb function object.
|
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* @param cbw the command block wrapper.
|
||
*
|
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* @return RT_EOK on successful.
|
||
*/
|
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static rt_ssize_t _request_sense(ufunction_t func, ustorage_cbw_t cbw)
|
||
{
|
||
struct mstorage *data;
|
||
struct request_sense_data *buf;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(func->device != RT_NULL);
|
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RT_ASSERT(cbw != RT_NULL);
|
||
|
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LOG_D("_request_sense");
|
||
|
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data = (struct mstorage*)func->user_data;
|
||
buf = (struct request_sense_data *)data->ep_in->buffer;
|
||
|
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buf->ErrorCode = 0x70;
|
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buf->Valid = 0;
|
||
buf->SenseKey = 2;
|
||
buf->Information[0] = 0;
|
||
buf->Information[1] = 0;
|
||
buf->Information[2] = 0;
|
||
buf->Information[3] = 0;
|
||
buf->AdditionalSenseLength = 0x0a;
|
||
buf->AdditionalSenseCode = 0x3a;
|
||
buf->AdditionalSenseCodeQualifier = 0;
|
||
|
||
data->cb_data_size = MIN(data->cb_data_size, SIZEOF_REQUEST_SENSE);
|
||
data->ep_in->request.buffer = (rt_uint8_t*)data->ep_in->buffer;
|
||
data->ep_in->request.size = data->cb_data_size;
|
||
data->ep_in->request.req_type = UIO_REQUEST_WRITE;
|
||
rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
|
||
data->status = STAT_CMD;
|
||
|
||
return data->cb_data_size;
|
||
}
|
||
|
||
/**
|
||
* This function will handle mode_sense_6 request.
|
||
*
|
||
* @param func the usb function object.
|
||
* @param cbw the command block wrapper.
|
||
*
|
||
* @return RT_EOK on successful.
|
||
*/
|
||
static rt_ssize_t _mode_sense_6(ufunction_t func, ustorage_cbw_t cbw)
|
||
{
|
||
struct mstorage *data;
|
||
rt_uint8_t *buf;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(func->device != RT_NULL);
|
||
RT_ASSERT(cbw != RT_NULL);
|
||
|
||
LOG_D("_mode_sense_6");
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
buf = data->ep_in->buffer;
|
||
buf[0] = 3;
|
||
buf[1] = 0;
|
||
buf[2] = 0;
|
||
buf[3] = 0;
|
||
|
||
if(UDISK_READONLY)
|
||
{
|
||
buf[2] = 0x80;
|
||
}
|
||
|
||
data->cb_data_size = MIN(data->cb_data_size, SIZEOF_MODE_SENSE_6);
|
||
data->ep_in->request.buffer = buf;
|
||
data->ep_in->request.size = data->cb_data_size;
|
||
data->ep_in->request.req_type = UIO_REQUEST_WRITE;
|
||
rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
|
||
data->status = STAT_CMD;
|
||
|
||
return data->cb_data_size;
|
||
}
|
||
|
||
static rt_ssize_t _mode_sense_10(ufunction_t func, ustorage_cbw_t cbw)
|
||
{
|
||
struct mstorage *data;
|
||
rt_uint8_t *buf;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(func->device != RT_NULL);
|
||
RT_ASSERT(cbw != RT_NULL);
|
||
|
||
LOG_D("_mode_sense_10");
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
buf = data->ep_in->buffer;
|
||
buf[0] = 0x43;
|
||
buf[1] = 0;
|
||
buf[2] = 0;
|
||
buf[3] = 0;
|
||
|
||
|
||
data->cb_data_size = MIN(data->cb_data_size, SIZEOF_MODE_SENSE_10);
|
||
data->ep_in->request.buffer = buf;
|
||
data->ep_in->request.size = data->cb_data_size;
|
||
data->ep_in->request.req_type = UIO_REQUEST_WRITE;
|
||
rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
|
||
data->status = STAT_CMD;
|
||
|
||
return data->cb_data_size;
|
||
}
|
||
|
||
/**
|
||
* This function will handle read_capacities request.
|
||
*
|
||
* @param func the usb function object.
|
||
* @param cbw the command block wrapper.
|
||
*
|
||
* @return RT_EOK on successful.
|
||
*/
|
||
static rt_ssize_t _read_capacities(ufunction_t func, ustorage_cbw_t cbw)
|
||
{
|
||
struct mstorage *data;
|
||
rt_uint8_t *buf;
|
||
rt_uint32_t sector_count, sector_size;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(func->device != RT_NULL);
|
||
RT_ASSERT(cbw != RT_NULL);
|
||
|
||
LOG_D("_read_capacities");
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
|
||
if(data->test_unit || data->udisk_func->u_get_status()){
|
||
data->csw_response.status = 1;
|
||
rt_usbd_ep_set_stall(func->device, data->ep_in);
|
||
return 0;
|
||
}
|
||
data->geometry.sector_count = data->udisk_func->u_get_cap();
|
||
|
||
buf = data->ep_in->buffer;
|
||
sector_count = data->geometry.sector_count;
|
||
sector_size = data->geometry.bytes_per_sector;
|
||
|
||
*(rt_uint32_t*)&buf[0] = 0x08000000;
|
||
buf[4] = sector_count >> 24;
|
||
buf[5] = 0xff & (sector_count >> 16);
|
||
buf[6] = 0xff & (sector_count >> 8);
|
||
buf[7] = 0xff & (sector_count);
|
||
buf[8] = 0x02;
|
||
buf[9] = 0xff & (sector_size >> 16);
|
||
buf[10] = 0xff & (sector_size >> 8);
|
||
buf[11] = 0xff & sector_size;
|
||
|
||
data->cb_data_size = MIN(data->cb_data_size, SIZEOF_READ_CAPACITIES);
|
||
data->ep_in->request.buffer = buf;
|
||
data->ep_in->request.size = data->cb_data_size;
|
||
data->ep_in->request.req_type = UIO_REQUEST_WRITE;
|
||
rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
|
||
data->status = STAT_CMD;
|
||
|
||
return data->cb_data_size;
|
||
}
|
||
|
||
/**
|
||
* This function will handle read_capacity request.
|
||
*
|
||
* @param func the usb function object.
|
||
* @param cbw the command block wapper.
|
||
*
|
||
* @return RT_EOK on successful.
|
||
*/
|
||
static rt_ssize_t _read_capacity(ufunction_t func, ustorage_cbw_t cbw)
|
||
{
|
||
struct mstorage *data;
|
||
|
||
rt_uint8_t *buf;
|
||
rt_uint32_t sector_count, sector_size;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(func->device != RT_NULL);
|
||
RT_ASSERT(cbw != RT_NULL);
|
||
|
||
LOG_D("_read_capacity");
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
|
||
if(data->test_unit || data->udisk_func->u_get_status()){
|
||
data->csw_response.status = 1;
|
||
rt_usbd_ep_set_stall(func->device, data->ep_in);
|
||
return 0;
|
||
}
|
||
data->geometry.sector_count = data->udisk_func->u_get_cap();
|
||
|
||
buf = data->ep_in->buffer;
|
||
sector_count = data->geometry.sector_count - 1; /* Last Logical Block Address */
|
||
sector_size = data->geometry.bytes_per_sector;
|
||
|
||
buf[0] = sector_count >> 24;
|
||
buf[1] = 0xff & (sector_count >> 16);
|
||
buf[2] = 0xff & (sector_count >> 8);
|
||
buf[3] = 0xff & (sector_count);
|
||
buf[4] = 0x0;
|
||
buf[5] = 0xff & (sector_size >> 16);
|
||
buf[6] = 0xff & (sector_size >> 8);
|
||
buf[7] = 0xff & sector_size;
|
||
|
||
data->cb_data_size = MIN(data->cb_data_size, SIZEOF_READ_CAPACITY);
|
||
data->ep_in->request.buffer = buf;
|
||
data->ep_in->request.size = data->cb_data_size;
|
||
data->ep_in->request.req_type = UIO_REQUEST_WRITE;
|
||
rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
|
||
data->status = STAT_CMD;
|
||
|
||
return data->cb_data_size;
|
||
}
|
||
|
||
/**
|
||
* This function will handle read_10 request.
|
||
*
|
||
* @param func the usb function object.
|
||
* @param cbw the command block wrapper.
|
||
*
|
||
* @return RT_EOK on successful.
|
||
*/
|
||
static rt_ssize_t _read_10(ufunction_t func, ustorage_cbw_t cbw)
|
||
{
|
||
struct mstorage *data;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(func->device != RT_NULL);
|
||
RT_ASSERT(cbw != RT_NULL);
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
|
||
if(data->test_unit || data->udisk_func->u_get_status()){
|
||
data->csw_response.status = 1;
|
||
rt_usbd_ep_set_stall(func->device, data->ep_in);
|
||
return 0;
|
||
}
|
||
|
||
data->block = cbw->cb[2]<<24 | cbw->cb[3]<<16 | cbw->cb[4]<<8 |
|
||
cbw->cb[5]<<0;
|
||
data->count = cbw->cb[7]<<8 | cbw->cb[8]<<0;
|
||
|
||
RT_ASSERT(data->count < data->geometry.sector_count);
|
||
|
||
data->csw_response.data_reside = data->cb_data_size;
|
||
|
||
#if PINGPANG_BUF_EN
|
||
data->read_calc_optimize_sec = usbd_mass_speed_sec_calc(data->count);
|
||
if (data->read_calc_optimize_sec) {
|
||
data->read_calc_optimize_sec = data->count / data->read_calc_optimize_sec;
|
||
data->multi_sector_en = 1;
|
||
} else {
|
||
data->multi_sector_en = 0;
|
||
}
|
||
|
||
usbd_mass_speed_optimize_send_mq(g_dev, data->block, data->count, READ_FLAG);
|
||
os_sema_down(g_dev->sem, osWaitForever);
|
||
|
||
if(g_dev->error_flag == 1)
|
||
{
|
||
rt_kprintf("read data error\n");
|
||
os_sema_up(g_dev->usb_sem_write);
|
||
rt_usbd_ep_set_stall(func->device, data->ep_in);
|
||
data->csw_response.status = 1;
|
||
return 0;
|
||
}
|
||
|
||
if(g_dev->pingpang_flag)
|
||
{
|
||
os_sema_up(g_dev->usb_sem_write);
|
||
data->ep_in->buffer = data->udisk_speed_info.buf_2;
|
||
}
|
||
else
|
||
{
|
||
os_sema_up(g_dev->usb_sem_write);
|
||
data->ep_in->buffer = data->udisk_speed_info.buf_1;
|
||
}
|
||
|
||
if(data->multi_sector_en)
|
||
{
|
||
data->ep_in->request.buffer = data->ep_in->buffer;
|
||
data->ep_in->request.size = data->geometry.bytes_per_sector * data->read_calc_optimize_sec;
|
||
data->ep_in->request.req_type = UIO_REQUEST_WRITE;
|
||
rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
|
||
data->status = STAT_SEND;
|
||
|
||
}
|
||
else
|
||
{
|
||
data->ep_in->request.buffer = data->ep_in->buffer;
|
||
data->ep_in->request.size = data->geometry.bytes_per_sector;
|
||
data->ep_in->request.req_type = UIO_REQUEST_WRITE;
|
||
rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
|
||
data->status = STAT_SEND;
|
||
}
|
||
|
||
|
||
|
||
#else
|
||
rt_size_t size = 0;
|
||
size = data->udisk_func->u_read(data->block, 1, data->ep_in->buffer); //每个sector都进行读取sd
|
||
if(size){
|
||
rt_kprintf("read data error\n");
|
||
rt_usbd_ep_set_stall(func->device, data->ep_in);
|
||
data->csw_response.status = 1;
|
||
return 0;
|
||
}
|
||
|
||
data->ep_in->request.buffer = data->ep_in->buffer;
|
||
data->ep_in->request.size = data->geometry.bytes_per_sector;
|
||
data->ep_in->request.req_type = UIO_REQUEST_WRITE;
|
||
rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
|
||
data->status = STAT_SEND;
|
||
|
||
#endif
|
||
return data->geometry.bytes_per_sector;
|
||
}
|
||
|
||
/**
|
||
* This function will handle write_10 request.
|
||
*
|
||
* @param func the usb function object.
|
||
* @param cbw the command block wrapper.
|
||
*
|
||
* @return RT_EOK on successful.
|
||
*/
|
||
static rt_ssize_t _write_10(ufunction_t func, ustorage_cbw_t cbw)
|
||
{
|
||
struct mstorage *data;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(func->device != RT_NULL);
|
||
RT_ASSERT(cbw != RT_NULL);
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
|
||
data->block = cbw->cb[2]<<24 | cbw->cb[3]<<16 | cbw->cb[4]<<8 |
|
||
cbw->cb[5]<<0;
|
||
data->count = cbw->cb[7]<<8 | cbw->cb[8];
|
||
data->csw_response.data_reside = cbw->xfer_len;
|
||
data->size = data->count * data->geometry.bytes_per_sector;
|
||
|
||
LOG_D("_write_10 count 0x%x block 0x%x 0x%x",
|
||
data->count, data->block, data->geometry.sector_count);
|
||
|
||
data->csw_response.data_reside = data->cb_data_size;
|
||
|
||
#if PINGPANG_BUF_EN
|
||
data->write_calc_optimize_sec = usbd_mass_speed_sec_calc(data->count);
|
||
if (data->write_calc_optimize_sec) {
|
||
data->write_calc_optimize_sec = data->count / data->write_calc_optimize_sec;
|
||
data->multi_sector_en = 1;
|
||
} else {
|
||
data->multi_sector_en = 0;
|
||
}
|
||
|
||
if(g_dev->pingpang_flag)
|
||
{
|
||
data->ep_out->buffer = data->udisk_speed_info.buf_1;
|
||
}
|
||
else
|
||
{
|
||
data->ep_out->buffer = data->udisk_speed_info.buf_2;
|
||
}
|
||
|
||
if(data->multi_sector_en)
|
||
{
|
||
data->ep_out->request.buffer = data->ep_out->buffer;
|
||
data->ep_out->request.size = data->geometry.bytes_per_sector * data->write_calc_optimize_sec;
|
||
data->ep_out->request.req_type = UIO_REQUEST_READ_FULL;
|
||
rt_usbd_io_request(func->device, data->ep_out, &data->ep_out->request);
|
||
data->status = STAT_RECEIVE;
|
||
}
|
||
else
|
||
{
|
||
data->ep_out->request.buffer = data->ep_out->buffer;
|
||
data->ep_out->request.size = data->geometry.bytes_per_sector;
|
||
data->ep_out->request.req_type = UIO_REQUEST_READ_FULL;
|
||
rt_usbd_io_request(func->device, data->ep_out, &data->ep_out->request);
|
||
data->status = STAT_RECEIVE;
|
||
}
|
||
|
||
#else
|
||
data->ep_out->request.buffer = data->ep_out->buffer;
|
||
data->ep_out->request.size = data->geometry.bytes_per_sector;
|
||
data->ep_out->request.req_type = UIO_REQUEST_READ_FULL;
|
||
rt_usbd_io_request(func->device, data->ep_out, &data->ep_out->request);
|
||
data->status = STAT_RECEIVE;
|
||
#endif
|
||
return data->geometry.bytes_per_sector;
|
||
}
|
||
|
||
/**
|
||
* This function will handle verify_10 request.
|
||
*
|
||
* @param func the usb function object.
|
||
*
|
||
* @return RT_EOK on successful.
|
||
*/
|
||
static rt_ssize_t _verify_10(ufunction_t func, ustorage_cbw_t cbw)
|
||
{
|
||
struct mstorage *data;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(func->device != RT_NULL);
|
||
|
||
LOG_D("_verify_10");
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
data->csw_response.status = 0;
|
||
|
||
return 0;
|
||
}
|
||
|
||
static rt_ssize_t _start_stop(ufunction_t func,
|
||
ustorage_cbw_t cbw)
|
||
{
|
||
struct mstorage *data;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(func->device != RT_NULL);
|
||
|
||
LOG_D("_start_stop");
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
data->csw_response.status = 0;
|
||
|
||
data->test_unit = 1;
|
||
|
||
return 0;
|
||
}
|
||
|
||
static rt_err_t _ep_in_handler(ufunction_t func, rt_size_t size)
|
||
{
|
||
struct mstorage *data;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(func->device != RT_NULL);
|
||
|
||
LOG_D("_ep_in_handler");
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
|
||
switch(data->status)
|
||
{
|
||
case STAT_CSW:
|
||
if(data->ep_in->request.size != SIZEOF_CSW)
|
||
{
|
||
rt_kprintf("Size of csw command error\n");
|
||
rt_usbd_ep_set_stall(func->device, data->ep_in);
|
||
}
|
||
else
|
||
{
|
||
LOG_D("return to cbw status");
|
||
data->ep_out->request.buffer = (rt_uint8_t*)data->cbw;
|
||
data->ep_out->request.size = SIZEOF_CBW;
|
||
data->ep_out->request.req_type = UIO_REQUEST_READ_FULL;
|
||
rt_usbd_io_request(func->device, data->ep_out, &data->ep_out->request);
|
||
data->status = STAT_CBW;
|
||
}
|
||
break;
|
||
case STAT_CMD:
|
||
if(data->csw_response.data_reside == 0xFF)
|
||
{
|
||
data->csw_response.data_reside = 0;
|
||
}
|
||
else
|
||
{
|
||
data->csw_response.data_reside -= data->ep_in->request.size;
|
||
if(data->csw_response.data_reside != 0)
|
||
{
|
||
LOG_D("data_reside %d, request %d",
|
||
data->csw_response.data_reside, data->ep_in->request.size);
|
||
if(data->processing->dir == DIR_OUT)
|
||
{
|
||
rt_usbd_ep_set_stall(func->device, data->ep_out);
|
||
}
|
||
else
|
||
{
|
||
//rt_kprintf("warning:in stall path but not stall\n");
|
||
|
||
/* FIXME: Disable the operation or the disk cannot work. */
|
||
//rt_usbd_ep_set_stall(func->device, data->ep_in);
|
||
}
|
||
data->csw_response.data_reside = 0;
|
||
}
|
||
}
|
||
_send_status(func);
|
||
break;
|
||
case STAT_SEND:
|
||
|
||
#if PINGPANG_BUF_EN
|
||
|
||
if(data->multi_sector_en)
|
||
{
|
||
data->csw_response.data_reside -= data->ep_in->request.size;
|
||
data->count -= data->read_calc_optimize_sec;
|
||
data->block += data->read_calc_optimize_sec;
|
||
|
||
}
|
||
else
|
||
{
|
||
data->csw_response.data_reside -= data->ep_in->request.size;
|
||
data->count--;
|
||
data->block++;
|
||
}
|
||
|
||
if(data->count > 0 && data->csw_response.data_reside > 0)
|
||
{
|
||
os_sema_down(g_dev->sem, osWaitForever);
|
||
|
||
if(g_dev->error_flag == 1)
|
||
{
|
||
rt_kprintf("disk read error\n");
|
||
os_sema_up(g_dev->usb_sem_write);
|
||
rt_usbd_ep_set_stall(func->device, data->ep_in);
|
||
return -RT_ERROR;
|
||
}
|
||
|
||
if(g_dev->pingpang_flag)
|
||
{
|
||
os_sema_up(g_dev->usb_sem_write);
|
||
data->ep_in->buffer = data->udisk_speed_info.buf_2;
|
||
}
|
||
else
|
||
{
|
||
os_sema_up(g_dev->usb_sem_write);
|
||
data->ep_in->buffer = data->udisk_speed_info.buf_1;
|
||
}
|
||
|
||
if(data->multi_sector_en)
|
||
{
|
||
data->ep_in->request.buffer = data->ep_in->buffer;
|
||
data->ep_in->request.size = data->geometry.bytes_per_sector * data->read_calc_optimize_sec;
|
||
data->ep_in->request.req_type = UIO_REQUEST_WRITE;
|
||
rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
|
||
}
|
||
else
|
||
{
|
||
data->ep_in->request.buffer = data->ep_in->buffer;
|
||
data->ep_in->request.size = data->geometry.bytes_per_sector;
|
||
data->ep_in->request.req_type = UIO_REQUEST_WRITE;
|
||
rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
|
||
}
|
||
}
|
||
else
|
||
{
|
||
_send_status(func);
|
||
}
|
||
|
||
#else
|
||
data->csw_response.data_reside -= data->ep_in->request.size;
|
||
data->count--;
|
||
data->block++;
|
||
if(data->count > 0 && data->csw_response.data_reside > 0)
|
||
{
|
||
rt_size_t read_size = 0;
|
||
read_size = data->udisk_func->u_read(data->block, 1, data->ep_in->buffer);
|
||
if(read_size){
|
||
rt_kprintf("disk read error\n");
|
||
rt_usbd_ep_set_stall(func->device, data->ep_in);
|
||
return -RT_ERROR;
|
||
}
|
||
|
||
data->ep_in->request.buffer = data->ep_in->buffer;
|
||
data->ep_in->request.size = data->geometry.bytes_per_sector;
|
||
data->ep_in->request.req_type = UIO_REQUEST_WRITE;
|
||
rt_usbd_io_request(func->device, data->ep_in, &data->ep_in->request);
|
||
}
|
||
else
|
||
{
|
||
_send_status(func);
|
||
}
|
||
#endif
|
||
break;
|
||
}
|
||
|
||
return RT_EOK;
|
||
}
|
||
|
||
|
||
static void cbw_dump(struct ustorage_cbw* cbw)
|
||
{
|
||
RT_ASSERT(cbw != RT_NULL);
|
||
|
||
os_printf("signature 0x%x\n", cbw->signature);
|
||
os_printf("tag 0x%x\n", cbw->tag);
|
||
os_printf("xfer_len 0x%x\n", cbw->xfer_len);
|
||
os_printf("dflags 0x%x\n", cbw->dflags);
|
||
os_printf("lun 0x%x\n", cbw->lun);
|
||
os_printf("cb_len 0x%x\n", cbw->cb_len);
|
||
os_printf("cb[0] 0x%x\n", cbw->cb[0]);
|
||
for(int i = 0;i < 16; i++){
|
||
os_printf("cbw->cb[%d]:%d\n",i,cbw->cb[i]);
|
||
}
|
||
}
|
||
|
||
|
||
static struct scsi_cmd* _find_cbw_command(rt_uint16_t cmd)
|
||
{
|
||
int i;
|
||
|
||
for(i=0; i<sizeof(cmd_data)/sizeof(struct scsi_cmd); i++)
|
||
{
|
||
if(cmd_data[i].cmd == cmd)
|
||
return &cmd_data[i];
|
||
}
|
||
|
||
return RT_NULL;
|
||
}
|
||
|
||
static void _cb_len_calc(ufunction_t func, struct scsi_cmd* cmd,
|
||
ustorage_cbw_t cbw)
|
||
{
|
||
struct mstorage *data;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(cmd != RT_NULL);
|
||
RT_ASSERT(cbw != RT_NULL);
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
if(cmd->cmd_len == 6)
|
||
{
|
||
switch(cmd->type)
|
||
{
|
||
case COUNT:
|
||
data->cb_data_size = cbw->cb[4];
|
||
break;
|
||
case BLOCK_COUNT:
|
||
data->cb_data_size = cbw->cb[4] * data->geometry.bytes_per_sector;
|
||
break;
|
||
case FIXED:
|
||
data->cb_data_size = cmd->data_size;
|
||
break;
|
||
default:
|
||
break;
|
||
}
|
||
}
|
||
else if(cmd->cmd_len == 10)
|
||
{
|
||
switch(cmd->type)
|
||
{
|
||
case COUNT:
|
||
data->cb_data_size = cbw->cb[7]<<8 | cbw->cb[8];
|
||
break;
|
||
case BLOCK_COUNT:
|
||
data->cb_data_size = (cbw->cb[7]<<8 | cbw->cb[8]) *
|
||
data->geometry.bytes_per_sector;
|
||
break;
|
||
case FIXED:
|
||
data->cb_data_size = cmd->data_size;
|
||
break;
|
||
default:
|
||
break;
|
||
}
|
||
}
|
||
|
||
//workaround: for stability in full-speed mode
|
||
else if(cmd->cmd_len == 12)
|
||
{
|
||
switch(cmd->type)
|
||
{
|
||
case COUNT:
|
||
data->cb_data_size = cbw->cb[4];
|
||
break;
|
||
default:
|
||
break;
|
||
}
|
||
}
|
||
else
|
||
{
|
||
rt_kprintf("cmd_len error %d\n", cmd->cmd_len);
|
||
}
|
||
}
|
||
|
||
static rt_bool_t _cbw_verify(ufunction_t func, struct scsi_cmd* cmd,
|
||
ustorage_cbw_t cbw)
|
||
{
|
||
struct mstorage *data;
|
||
|
||
RT_ASSERT(cmd != RT_NULL);
|
||
RT_ASSERT(cbw != RT_NULL);
|
||
RT_ASSERT(func != RT_NULL);
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
if(cmd->cmd_len != cbw->cb_len)
|
||
{
|
||
rt_kprintf("cb_len error\n");
|
||
cmd->cmd_len = cbw->cb_len;
|
||
}
|
||
|
||
if(cbw->xfer_len > 0 && data->cb_data_size == 0)
|
||
{
|
||
rt_kprintf("xfer_len > 0 && data_size == 0\n");
|
||
return RT_FALSE;
|
||
}
|
||
|
||
if(cbw->xfer_len == 0 && data->cb_data_size > 0)
|
||
{
|
||
rt_kprintf("xfer_len == 0 && data_size > 0");
|
||
return RT_FALSE;
|
||
}
|
||
|
||
if(((cbw->dflags & USB_DIR_IN) && (cmd->dir == DIR_OUT)) ||
|
||
(!(cbw->dflags & USB_DIR_IN) && (cmd->dir == DIR_IN)))
|
||
{
|
||
rt_kprintf("dir error\n");
|
||
return RT_FALSE;
|
||
}
|
||
|
||
if(cbw->xfer_len > data->cb_data_size)
|
||
{
|
||
rt_kprintf("xfer_len > data_size\n");
|
||
return RT_FALSE;
|
||
}
|
||
|
||
if(cbw->xfer_len < data->cb_data_size)
|
||
{
|
||
rt_kprintf("xfer_len < data_size\n");
|
||
data->cb_data_size = cbw->xfer_len;
|
||
data->csw_response.status = 1;
|
||
}
|
||
|
||
return RT_TRUE;
|
||
}
|
||
|
||
static rt_ssize_t _cbw_handler(ufunction_t func, struct scsi_cmd* cmd,
|
||
ustorage_cbw_t cbw)
|
||
{
|
||
struct mstorage *data;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(cbw != RT_NULL);
|
||
RT_ASSERT(cmd->handler != RT_NULL);
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
data->processing = cmd;
|
||
return cmd->handler(func, cbw);
|
||
}
|
||
|
||
/**
|
||
* This function will handle mass storage bulk out endpoint request.
|
||
*
|
||
* @param func the usb function object.
|
||
* @param size request size.
|
||
*
|
||
* @return RT_EOK.
|
||
*/
|
||
static rt_err_t _ep_out_handler(ufunction_t func, rt_size_t size)
|
||
{
|
||
struct mstorage *data;
|
||
struct scsi_cmd* cmd;
|
||
rt_size_t len;
|
||
struct ustorage_cbw* cbw;
|
||
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(func->device != RT_NULL);
|
||
|
||
LOG_D("_ep_out_handler %d", size);
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
cbw = data->cbw;
|
||
|
||
if(data->status == STAT_CBW)
|
||
{
|
||
// memcpy(cbw, data->ep_out->buffer, sizeof(struct ustorage_cbw));
|
||
/* dump cbw information */
|
||
if(cbw->signature != CBW_SIGNATURE || size != SIZEOF_CBW)
|
||
{
|
||
goto exit;
|
||
}
|
||
|
||
data->csw_response.signature = CSW_SIGNATURE;
|
||
data->csw_response.tag = cbw->tag;
|
||
data->csw_response.data_reside = cbw->xfer_len;
|
||
data->csw_response.status = 0;
|
||
|
||
LOG_D("ep_out reside %d", data->csw_response.data_reside);
|
||
|
||
cmd = _find_cbw_command(cbw->cb[0]);
|
||
if(cmd == RT_NULL)
|
||
{
|
||
rt_kprintf("can't find cbw command\n");
|
||
cbw_dump(cbw);
|
||
goto exit;
|
||
}
|
||
|
||
_cb_len_calc(func, cmd, cbw);
|
||
if(!_cbw_verify(func, cmd, cbw))
|
||
{
|
||
goto exit;
|
||
}
|
||
|
||
len = _cbw_handler(func, cmd, cbw);
|
||
if(len == 0)
|
||
{
|
||
_send_status(func);
|
||
}
|
||
|
||
return RT_EOK;
|
||
}
|
||
else if(data->status == STAT_RECEIVE)
|
||
{
|
||
LOG_D("write size %d block 0x%x request size 0x%x",
|
||
size, data->block, data->size);
|
||
|
||
#if PINGPANG_BUF_EN
|
||
if(data->csw_response.data_reside == data->cb_data_size)
|
||
{
|
||
usbd_mass_speed_optimize_send_mq(g_dev, data->block, data->count, WRITE_FLAG);
|
||
}
|
||
else
|
||
{
|
||
os_sema_up(g_dev->usb_sem_write);
|
||
}
|
||
|
||
|
||
data->size -= size;
|
||
data->csw_response.data_reside -= size;
|
||
|
||
if(data->csw_response.data_reside != 0)
|
||
{
|
||
os_sema_down(g_dev->sem, osWaitForever);
|
||
if(g_dev->pingpang_flag)
|
||
{
|
||
data->ep_out->buffer = data->udisk_speed_info.buf_1;
|
||
}
|
||
else
|
||
{
|
||
data->ep_out->buffer = data->udisk_speed_info.buf_2;
|
||
}
|
||
|
||
if(data->multi_sector_en)
|
||
{
|
||
data->ep_out->request.buffer = data->ep_out->buffer;
|
||
data->ep_out->request.size = data->geometry.bytes_per_sector * data->write_calc_optimize_sec;
|
||
data->ep_out->request.req_type = UIO_REQUEST_READ_FULL;
|
||
rt_usbd_io_request(func->device, data->ep_out, &data->ep_out->request);
|
||
data->block += data->write_calc_optimize_sec;
|
||
data->count -= data->write_calc_optimize_sec;
|
||
}
|
||
else
|
||
{
|
||
data->ep_out->request.buffer = data->ep_out->buffer;
|
||
data->ep_out->request.size = data->geometry.bytes_per_sector;
|
||
data->ep_out->request.req_type = UIO_REQUEST_READ_FULL;
|
||
rt_usbd_io_request(func->device, data->ep_out, &data->ep_out->request);
|
||
data->block ++;
|
||
data->count --;
|
||
}
|
||
}
|
||
else
|
||
{
|
||
os_sema_up(g_dev->usb_sem_write);
|
||
os_sema_down(g_dev->sem, osWaitForever);
|
||
if(g_dev->error_flag)
|
||
{
|
||
rt_kprintf("disk write error\n");
|
||
goto exit;
|
||
}
|
||
_send_status(func);
|
||
}
|
||
#else
|
||
rt_uint32_t ret = 0;
|
||
ret = data->udisk_func->u_write(data->block, 1, data->ep_out->buffer);
|
||
if(ret)
|
||
{
|
||
rt_kprintf("disk write error\n");
|
||
goto exit;
|
||
}
|
||
|
||
data->size -= size;
|
||
data->csw_response.data_reside -= size;
|
||
|
||
if(data->csw_response.data_reside != 0)
|
||
{
|
||
data->ep_out->request.buffer = data->ep_out->buffer;
|
||
data->ep_out->request.size = data->geometry.bytes_per_sector;
|
||
data->ep_out->request.req_type = UIO_REQUEST_READ_FULL;
|
||
rt_usbd_io_request(func->device, data->ep_out, &data->ep_out->request);
|
||
data->block ++;
|
||
}
|
||
else
|
||
{
|
||
_send_status(func);
|
||
}
|
||
#endif
|
||
|
||
return RT_EOK;
|
||
}
|
||
|
||
exit:
|
||
if(data->csw_response.data_reside)
|
||
{
|
||
if(cbw->dflags & USB_DIR_IN)
|
||
{
|
||
rt_usbd_ep_set_stall(func->device, data->ep_in);
|
||
}
|
||
else
|
||
{
|
||
rt_usbd_ep_set_stall(func->device, data->ep_in);
|
||
rt_usbd_ep_set_stall(func->device, data->ep_out);
|
||
}
|
||
}
|
||
data->csw_response.status = 1;
|
||
_send_status(func);
|
||
|
||
return -RT_ERROR;
|
||
}
|
||
|
||
rt_uint32_t lun __attribute__((aligned(4)));
|
||
/**
|
||
* This function will handle mass storage interface request.
|
||
*
|
||
* @param func the usb function object.
|
||
* @param setup the setup request.
|
||
*
|
||
* @return RT_EOK on successful.
|
||
*/
|
||
static rt_err_t _interface_handler(ufunction_t func, ureq_t setup)
|
||
{
|
||
lun = 0;
|
||
|
||
RT_ASSERT(func != RT_NULL);
|
||
RT_ASSERT(func->device != RT_NULL);
|
||
RT_ASSERT(setup != RT_NULL);
|
||
|
||
LOG_D("mstorage_interface_handler");
|
||
|
||
switch(setup->bRequest)
|
||
{
|
||
case USBREQ_GET_MAX_LUN:
|
||
|
||
LOG_D("USBREQ_GET_MAX_LUN");
|
||
|
||
if(setup->wValue || setup->wLength != 1)
|
||
{
|
||
rt_usbd_ep0_set_stall(func->device);
|
||
}
|
||
else
|
||
{
|
||
rt_usbd_ep0_write(func->device, &lun, setup->wLength);
|
||
}
|
||
break;
|
||
case USBREQ_MASS_STORAGE_RESET:
|
||
|
||
LOG_D("USBREQ_MASS_STORAGE_RESET");
|
||
|
||
if(setup->wValue || setup->wLength != 0)
|
||
{
|
||
rt_usbd_ep0_set_stall(func->device);
|
||
}
|
||
else
|
||
{
|
||
dcd_ep0_send_status(func->device->dcd);
|
||
}
|
||
break;
|
||
default:
|
||
rt_kprintf("unknown interface request\n");
|
||
break;
|
||
}
|
||
|
||
return RT_EOK;
|
||
}
|
||
|
||
/**
|
||
* This function will run mass storage function, it will be called on handle set configuration request.
|
||
*
|
||
* @param func the usb function object.
|
||
*
|
||
* @return RT_EOK on successful.
|
||
*/
|
||
static rt_err_t _function_enable(ufunction_t func)
|
||
{
|
||
struct mstorage *data;
|
||
RT_ASSERT(func != RT_NULL);
|
||
os_printf("Mass storage function enabled");
|
||
data = (struct mstorage*)func->user_data;
|
||
|
||
#if 0
|
||
data->disk = RT_USE_UDISK_DEVICE;
|
||
if(data->disk == RT_NULL)
|
||
{
|
||
os_printf("disk get failed!!!!!!!!!\n");
|
||
return -RT_ERROR;
|
||
}
|
||
|
||
#ifdef RT_USING_DFS_MNTTABLE
|
||
dfs_unmount_device(data->disk);
|
||
#endif
|
||
#endif
|
||
|
||
data->geometry.bytes_per_sector = data->udisk_func->u_get_sector_size();
|
||
if(!data->udisk_func->u_get_status())
|
||
{
|
||
data->geometry.sector_count = data->udisk_func->u_get_cap();
|
||
}
|
||
else
|
||
{
|
||
data->geometry.sector_count = 0;
|
||
os_printf("get sd cap failed\n");
|
||
}
|
||
|
||
data->cbw = (struct ustorage_cbw *)rt_malloc(sizeof(struct ustorage_cbw));
|
||
if(data->cbw == RT_NULL)
|
||
{
|
||
rt_kprintf("data->cbw malloc failed!!!!\n");
|
||
return -RT_ENOMEM;
|
||
}
|
||
|
||
#if PINGPANG_BUF_EN
|
||
data->udisk_speed_info.buf_1 = (rt_uint8_t*)rt_malloc(data->geometry.bytes_per_sector * MULTI_SECTOR_COUNT);
|
||
if(data->udisk_speed_info.buf_1 == RT_NULL)
|
||
{
|
||
rt_free(data->cbw);
|
||
data->cbw = RT_NULL;
|
||
rt_kprintf("data->udisk_speed_info.buf_1 malloc failed!!!\n");
|
||
return -RT_ENOMEM;
|
||
}
|
||
data->udisk_speed_info.buf_2 = (rt_uint8_t*)rt_malloc(data->geometry.bytes_per_sector * MULTI_SECTOR_COUNT);
|
||
if(data->udisk_speed_info.buf_2 == RT_NULL)
|
||
{
|
||
rt_free(data->cbw);
|
||
data->cbw = RT_NULL;
|
||
rt_free(data->udisk_speed_info.buf_1);
|
||
data->udisk_speed_info.buf_1 = RT_NULL;
|
||
rt_kprintf("data->udisk_speed_info.buf_2 malloc failed!!!\n");
|
||
return -RT_ENOMEM;
|
||
}
|
||
|
||
//默认ep in和ep out使用同一个buffer空间,正常情况in和out不会同时进行
|
||
if(g_dev->pingpang_flag)
|
||
{
|
||
data->ep_in->buffer = data->udisk_speed_info.buf_2;
|
||
data->ep_out->buffer = data->udisk_speed_info.buf_2;
|
||
}
|
||
else
|
||
{
|
||
data->ep_in->buffer = data->udisk_speed_info.buf_1;
|
||
data->ep_out->buffer = data->udisk_speed_info.buf_1;
|
||
}
|
||
|
||
usbd_mass_speed_optimize_thread_init(&data->udisk_speed_info, data->udisk_func->u_read, data->udisk_func->u_write);
|
||
|
||
#else
|
||
data->ep_in->buffer = (rt_uint8_t*)rt_malloc(data->geometry.bytes_per_sector);
|
||
if(data->ep_in->buffer == RT_NULL)
|
||
{
|
||
rt_kprintf("ep in no memory\n");
|
||
return -RT_ENOMEM;
|
||
}
|
||
data->ep_out->buffer = (rt_uint8_t*)rt_malloc(data->geometry.bytes_per_sector);
|
||
if(data->ep_out->buffer == RT_NULL)
|
||
{
|
||
rt_free(data->ep_in->buffer);
|
||
data->ep_in->buffer = RT_NULL;
|
||
rt_kprintf("ep out no memory\n");
|
||
return -RT_ENOMEM;
|
||
}
|
||
#endif
|
||
|
||
data->test_unit = 0;
|
||
|
||
/* prepare to read CBW request */
|
||
data->ep_out->request.buffer = (rt_uint8_t*)data->cbw;
|
||
data->ep_out->request.size = SIZEOF_CBW;
|
||
data->ep_out->request.req_type = UIO_REQUEST_READ_FULL;
|
||
rt_usbd_io_request(func->device, data->ep_out, &data->ep_out->request);
|
||
|
||
return RT_EOK;
|
||
}
|
||
|
||
/**
|
||
* This function will stop mass storage function, it will be called on handle set configuration request.
|
||
*
|
||
* @param device the usb device object.
|
||
*
|
||
* @return RT_EOK on successful.
|
||
*/
|
||
static rt_err_t _function_disable(ufunction_t func)
|
||
{
|
||
struct mstorage *data;
|
||
RT_ASSERT(func != RT_NULL);
|
||
|
||
os_printf("Mass storage function disabled");
|
||
|
||
data = (struct mstorage*)func->user_data;
|
||
|
||
if(data->cbw != RT_NULL)
|
||
{
|
||
rt_free(data->cbw);
|
||
data->cbw = RT_NULL;
|
||
}
|
||
|
||
#if PINGPANG_BUF_EN
|
||
if(data->udisk_speed_info.buf_1 != RT_NULL)
|
||
{
|
||
rt_free(data->udisk_speed_info.buf_1);
|
||
data->udisk_speed_info.buf_1 = RT_NULL;
|
||
}
|
||
if(data->udisk_speed_info.buf_2 != RT_NULL)
|
||
{
|
||
rt_free(data->udisk_speed_info.buf_2);
|
||
data->udisk_speed_info.buf_2 = RT_NULL;
|
||
}
|
||
|
||
usbd_mass_speed_optimize_thread_deinit();
|
||
#else
|
||
if(data->ep_in->buffer != RT_NULL)
|
||
{
|
||
rt_free(data->ep_in->buffer);
|
||
data->ep_in->buffer = RT_NULL;
|
||
}
|
||
|
||
if(data->ep_out->buffer != RT_NULL)
|
||
{
|
||
rt_free(data->ep_out->buffer);
|
||
data->ep_out->buffer = RT_NULL;
|
||
}
|
||
#endif
|
||
|
||
#if 0
|
||
if(data->disk != RT_NULL)
|
||
{
|
||
#ifdef RT_USING_DFS_MNTTABLE
|
||
dfs_mount_device(data->disk);
|
||
#endif
|
||
data->disk = RT_NULL;
|
||
}
|
||
#endif
|
||
|
||
data->status = STAT_CBW;
|
||
|
||
return RT_EOK;
|
||
}
|
||
|
||
static struct ufunction_ops ops =
|
||
{
|
||
_function_enable,
|
||
_function_disable,
|
||
RT_NULL,
|
||
};
|
||
static rt_err_t _mstorage_descriptor_config(umass_desc_t desc, rt_uint8_t cintf_nr, rt_uint8_t device_is_hs)
|
||
{
|
||
#ifdef RT_USB_DEVICE_COMPOSITE
|
||
desc->iad_desc.bFirstInterface = cintf_nr;
|
||
#endif
|
||
desc->ep_out_desc.wMaxPacketSize = device_is_hs ? 512 : 64;
|
||
desc->ep_in_desc.wMaxPacketSize = device_is_hs ? 512 : 64;
|
||
return RT_EOK;
|
||
}
|
||
/**
|
||
* This function will create a mass storage function instance.
|
||
*
|
||
* @param device the usb device object.
|
||
*
|
||
* @return RT_EOK on successful.
|
||
*/
|
||
ufunction_t rt_usbd_function_mstorage_create(udevice_t device)
|
||
{
|
||
uintf_t intf;
|
||
struct mstorage *data;
|
||
ufunction_t func;
|
||
ualtsetting_t setting;
|
||
umass_desc_t mass_desc;
|
||
|
||
/* parameter check */
|
||
RT_ASSERT(device != RT_NULL);
|
||
|
||
/* set usb device string description */
|
||
#ifdef RT_USB_DEVICE_COMPOSITE
|
||
rt_usbd_device_set_interface_string(device, MSTRORAGE_INTF_STR_INDEX, _ustring[2]);
|
||
#else
|
||
rt_usbd_device_set_string(device, _ustring);
|
||
#endif
|
||
|
||
/* create a mass storage function */
|
||
func = rt_usbd_function_new(device, &dev_desc, &ops);
|
||
device->dev_qualifier = &dev_qualifier;
|
||
mstorage_func = func;
|
||
|
||
/* allocate memory for mass storage function data */
|
||
data = (struct mstorage*)rt_malloc(sizeof(struct mstorage));
|
||
rt_memset(data, 0, sizeof(struct mstorage));
|
||
data->udisk_func = RT_USE_UDISK_DEVICE;
|
||
if(data->udisk_func == RT_NULL)
|
||
{
|
||
os_printf("%s :data->udisk_func is NULL!!!",__FUNCTION__);
|
||
return 0;
|
||
}
|
||
|
||
func->user_data = (void*)data;
|
||
|
||
/* create an interface object */
|
||
intf = rt_usbd_interface_new(device, _interface_handler);
|
||
func->intf[0] = intf;
|
||
|
||
/* create an alternate setting object */
|
||
setting = rt_usbd_altsetting_new(sizeof(struct umass_descriptor));
|
||
func->setting[0] = setting;
|
||
|
||
/* config desc in alternate setting */
|
||
rt_usbd_altsetting_config_descriptor(setting, &_mass_desc, (rt_off_t)&((umass_desc_t)0)->intf_desc);
|
||
|
||
/* configure the msc interface descriptor */
|
||
_mstorage_descriptor_config(setting->desc, intf->intf_num, device->dcd->device_is_hs);
|
||
|
||
/* create a bulk out and a bulk in endpoint */
|
||
mass_desc = (umass_desc_t)setting->desc;
|
||
data->ep_in = rt_usbd_endpoint_new(&mass_desc->ep_in_desc, _ep_in_handler);
|
||
data->ep_out = rt_usbd_endpoint_new(&mass_desc->ep_out_desc, _ep_out_handler);
|
||
|
||
func->ep[0] = data->ep_in;
|
||
func->ep[1] = data->ep_out;
|
||
|
||
/* add the bulk out and bulk in endpoint to the alternate setting */
|
||
rt_usbd_altsetting_add_endpoint(setting, data->ep_out);
|
||
rt_usbd_altsetting_add_endpoint(setting, data->ep_in);
|
||
|
||
/* add the alternate setting to the interface, then set default setting */
|
||
rt_usbd_interface_add_altsetting(intf, setting);
|
||
rt_usbd_set_altsetting(intf, 0);
|
||
|
||
/* add the interface to the mass storage function */
|
||
rt_usbd_function_add_interface(func, intf);
|
||
|
||
return func;
|
||
}
|
||
|
||
void rt_usbd_function_mstorage_delete()
|
||
{
|
||
struct mstorage *data;
|
||
|
||
os_printf("%s %d\n",__FUNCTION__,__LINE__);
|
||
|
||
if(mstorage_func == RT_NULL)
|
||
{
|
||
os_printf("%s [%d]:Mstorage func is NULL!!!\n",__FUNCTION__,__LINE__);
|
||
return;
|
||
}
|
||
|
||
data = (struct mstorage*)mstorage_func->user_data;
|
||
|
||
if(data->ep_in->buffer != RT_NULL)
|
||
{
|
||
rt_free(data->ep_in->buffer);
|
||
data->ep_in->buffer = RT_NULL;
|
||
}
|
||
|
||
if(data->ep_out->buffer != RT_NULL)
|
||
{
|
||
rt_free(data->ep_out->buffer);
|
||
data->ep_out->buffer = RT_NULL;
|
||
}
|
||
|
||
if(data != RT_NULL)
|
||
{
|
||
rt_free(data);
|
||
data = RT_NULL;
|
||
}
|
||
|
||
if(mstorage_func != RT_NULL)
|
||
{
|
||
rt_usbd_function_release(mstorage_func);
|
||
mstorage_func = RT_NULL;
|
||
}
|
||
}
|
||
|
||
struct udclass msc_class =
|
||
{
|
||
.rt_usbd_function_create = rt_usbd_function_mstorage_create,
|
||
.rt_usbd_function_delete = rt_usbd_function_mstorage_delete,
|
||
};
|
||
|
||
int rt_usbd_msc_class_register(rt_uint32_t dev_id)
|
||
{
|
||
rt_usbd_class_register(&msc_class, dev_id);
|
||
return 0;
|
||
}
|
||
|
||
int rt_usbd_msc_class_unregister(rt_uint32_t dev_id)
|
||
{
|
||
rt_usbd_class_driver_unregister(&msc_class, dev_id);
|
||
return 0;
|
||
}
|
||
|
||
|
||
#endif
|