Draft implementation of downstream SPI interface. Significant mods

required to USB MSC class, mainly in usbd_msc_scsi.c. Currently
untested!
pull/7/head
Robert Fisk 10 years ago
parent 5acf8bbb88
commit d3da69eb07

@ -108,7 +108,7 @@
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@ -227,7 +227,7 @@
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@ -5,7 +5,7 @@
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@ -16,7 +16,7 @@
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File diff suppressed because it is too large Load Diff

@ -45,7 +45,7 @@
#endif
/* Includes ------------------------------------------------------------------*/
#include <hal_conf.h>
#include <hal_config.h>
/** @addtogroup STM32F4xx_HAL_Driver
* @{

@ -233,6 +233,8 @@ void HAL_PCD_ISOOUTIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum);
void HAL_PCD_ISOINIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum);
void HAL_PCD_ConnectCallback(PCD_HandleTypeDef *hpcd);
void HAL_PCD_DisconnectCallback(PCD_HandleTypeDef *hpcd);
void HAL_PCD_BufferFreedCallBack(PCD_HandleTypeDef *hpcd);
/**
* @}
*/

@ -266,7 +266,7 @@ __weak HAL_StatusTypeDef HAL_InitTick(uint32_t TickPriority)
HAL_SYSTICK_Config(HAL_RCC_GetHCLKFreq()/1000);
/*Configure the SysTick IRQ priority */
//*** Leave Systick interrupt at lowest priority
//*** HAL_MspInit() will set our desired priority
//HAL_NVIC_SetPriority(SysTick_IRQn, TickPriority ,0);
/* Return function status */

@ -259,6 +259,7 @@ HAL_StatusTypeDef HAL_DMA_Init(DMA_HandleTypeDef *hdma)
/* Initialize the DMA state */
hdma->State = HAL_DMA_STATE_READY;
__HAL_UNLOCK(hdma);
return HAL_OK;
}

@ -191,6 +191,7 @@ HAL_StatusTypeDef HAL_PCD_Init(PCD_HandleTypeDef *hpcd)
USB_DevInit(hpcd->Instance, hpcd->Init);
hpcd->State= HAL_PCD_STATE_READY;
__HAL_UNLOCK(hpcd);
USB_DevDisconnect (hpcd->Instance);
return HAL_OK;
@ -1128,7 +1129,7 @@ static HAL_StatusTypeDef PCD_WriteEmptyTxFifo(PCD_HandleTypeDef *hpcd, uint32_t
len32b = (len + 3) / 4;
while ( (USBx_INEP(epnum)->DTXFSTS & USB_OTG_DTXFSTS_INEPTFSAV) > len32b &&
while ( (USBx_INEP(epnum)->DTXFSTS & USB_OTG_DTXFSTS_INEPTFSAV) > len32b && /* SHOULD THIS BE ">=" ??????? */
ep->xfer_count < ep->xfer_len &&
ep->xfer_len != 0)
{
@ -1147,11 +1148,12 @@ static HAL_StatusTypeDef PCD_WriteEmptyTxFifo(PCD_HandleTypeDef *hpcd, uint32_t
ep->xfer_count += len;
}
if(len <= 0)
{
if(len <= 0) //SHOULD THIS BE "if (ep->xfer_count >= ep->xfer_len)" ???????
{ //or just move USB_WritePacket up below the while check???????
fifoemptymsk = 0x1 << epnum;
USBx_DEVICE->DIEPEMPMSK &= ~fifoemptymsk;
HAL_PCD_BufferFreedCallBack(hpcd);
}
return HAL_OK;

@ -222,6 +222,7 @@ HAL_StatusTypeDef HAL_SPI_Init(SPI_HandleTypeDef *hspi)
hspi->ErrorCode = HAL_SPI_ERROR_NONE;
hspi->State = HAL_SPI_STATE_READY;
__HAL_UNLOCK(hspi);
return HAL_OK;
}

@ -9,6 +9,8 @@
#define INC_BOARD_CONFIG_H_
#define BSRR_SHIFT_HIGH 0
#define BSRR_SHIFT_LOW 16
#define PA_JTMS GPIO_PIN_13
#define PA_JTCK GPIO_PIN_14
@ -21,10 +23,17 @@
#define STAT_LED_PIN GPIO_PIN_12
#define STAT_LED_PORT GPIOC
#define STAT_LED_BSRR_OFF (STAT_LED_PIN)
#define STAT_LED_BSRR_ON (STAT_LED_PIN << 16)
#define STAT_LED_ON STAT_LED_PORT->BSRR = (STAT_LED_PIN << BSRR_SHIFT_LOW) //Stat LED is active-low
#define STAT_LED_OFF STAT_LED_PORT->BSRR = (STAT_LED_PIN << BSRR_SHIFT_HIGH)
#define SPI1_NSS_PIN GPIO_PIN_4
#define SPI1_NSS_PORT GPIOA
#define SPI1_NSS_ASSERT SPI1_NSS_PORT->BSRR = (SPI1_NSS_PIN << BSRR_SHIFT_LOW)
#define SPI1_NSS_DEASSERT SPI1_NSS_PORT->BSRR = (SPI1_NSS_PIN << BSRR_SHIFT_HIGH)
#define DOWNSTREAM_TX_OK_PIN GPIO_PIN_3
#define DOWNSTREAM_TX_OK_PORT GPIOA
#define DOWNSTREAM_TX_OK_ACTIVE (!(DOWNSTREAM_TX_OK_PORT->IDR & DOWNSTREAM_TX_OK_PIN))
#endif /* INC_BOARD_CONFIG_H_ */

@ -0,0 +1,39 @@
/*
* interface_def.h
*
* Created on: 22/06/2015
* Author: Robert Fisk
*/
#ifndef INC_DOWNSTREAM_INTERFACE_DEF_H_
#define INC_DOWNSTREAM_INTERFACE_DEF_H_
//Upstream only supports one LUN.
//Downstream may support > 1 LUN and only report the first active one to upstream.
#define UPSTREAM_LUN_NBR 1
#define COMMAND_CLASS_DATA_FLAG 0x80
#define COMMAND_CLASS_MASK ((uint8_t)(~COMMAND_CLASS_DATA_FLAG))
typedef enum
{
COMMAND_CLASS_INTERFACE = 0,
COMMAND_CLASS_MASS_STORAGE = 1,
COMMAND_CLASS_MAX = 2,
}
InterfaceCommandClassTypeDef;
typedef enum
{
COMMAND_MSC_TEST_UNIT_READY = 0, //Returns HAL_StatusTypeDef result
COMMAND_MSC_GET_CAPACITY = 2, //Returns uint32_t blk_nbr, uint32_t blk_size
COMMAND_MSC_BEGIN_READ = 3, //Returns HAL_StatusTypeDef result, then data stream
COMMAND_MSC_BEGIN_WRITE = 4, //Returns HAL_OK, HAL_ERROR if medium not present, HAL_BUSY if write-protected result, then waits for data stream
COMMAND_MSC_MAX = 5,
}
InterfaceCommandMscTypeDef;
#endif /* INC_DOWNSTREAM_INTERFACE_DEF_H_ */

@ -0,0 +1,38 @@
/*
* downstream_interface_msc.h
*
* Created on: 4/07/2015
* Author: Robert Fisk
*/
#ifndef INC_DOWNSTREAM_INTERFACE_MSC_H_
#define INC_DOWNSTREAM_INTERFACE_MSC_H_
#include "downstream_spi.h"
typedef void (*DownstreamInterfaceMSCCallbackTypeDef)(HAL_StatusTypeDef result);
typedef void (*DownstreamInterfaceMSCCallbackPacketTypeDef)(HAL_StatusTypeDef result,
DownstreamPacketTypeDef* downstreamPacket);
typedef void (*DownstreamInterfaceMSCCallbackUintPacketTypeDef)(HAL_StatusTypeDef result,
uint32_t result_uint[],
DownstreamPacketTypeDef* downstreamPacket);
HAL_StatusTypeDef DownstreamInterface_TestReady(DownstreamInterfaceMSCCallbackTypeDef callback);
HAL_StatusTypeDef DownstreamInterface_GetCapacity(DownstreamInterfaceMSCCallbackUintPacketTypeDef callback);
HAL_StatusTypeDef DownstreamInterface_BeginRead(DownstreamInterfaceMSCCallbackTypeDef callback,
uint64_t readBlockStart,
uint32_t readBlockCount,
uint32_t readByteCount);
HAL_StatusTypeDef DownstreamInterface_GetStreamDataPacket(DownstreamInterfaceMSCCallbackPacketTypeDef callback);
HAL_StatusTypeDef DownstreamInterface_BeginWrite(DownstreamInterfaceMSCCallbackTypeDef callback,
uint64_t readBlockStart,
uint32_t readBlockCount);
HAL_StatusTypeDef DownstreamInterface_PutStreamDataPacket(DownstreamPacketTypeDef* packetToSend,
uint32_t dataLength);
#endif /* INC_DOWNSTREAM_INTERFACE_MSC_H_ */

@ -0,0 +1,89 @@
/*
* downstream_spi.h
*
* Created on: 21/06/2015
* Author: Robert Fisk
*/
#ifndef INC_DOWNSTREAM_SPI_H_
#define INC_DOWNSTREAM_SPI_H_
#include "usbd_def.h"
#define DOWNSTREAM_PACKET_HEADER_LEN (2) //Min length = CommandClass & Command bytes
#define DOWNSTREAM_PACKET_LEN (DOWNSTREAM_PACKET_HEADER_LEN + USB_HS_MAX_PACKET_SIZE)
#define DOWNSTREAM_PACKET_LEN_MIN (DOWNSTREAM_PACKET_HEADER_LEN)
#define SPI_INTERFACE_FREAKOUT_VOID \
do { \
while (1); \
/*DownstreamInterfaceState = INTERFACE_STATE_ERROR;*/ \
/*return;*/ \
} while (0);
#define SPI_INTERFACE_FREAKOUT_HAL_ERROR \
do { \
while (1); \
/*DownstreamInterfaceState = INTERFACE_STATE_ERROR;*/ \
/*return HAL_ERROR;*/ \
} while (0);
typedef enum
{
INTERFACE_STATE_RESET = 0,
INTERFACE_STATE_WAITING_CLIENT = 1,
INTERFACE_STATE_IDLE = 2,
INTERFACE_STATE_TX_SIZE_WAIT = 3,
INTERFACE_STATE_TX_SIZE = 4,
INTERFACE_STATE_TX_PACKET_WAIT = 5,
INTERFACE_STATE_TX_PACKET = 6,
INTERFACE_STATE_RX_SIZE_WAIT = 7,
INTERFACE_STATE_RX_SIZE = 8,
INTERFACE_STATE_RX_PACKET_WAIT = 9,
INTERFACE_STATE_RX_PACKET = 10,
INTERFACE_STATE_ERROR = 11
} InterfaceStateTypeDef;
typedef enum
{
NOT_BUSY = 0,
BUSY = 1
} PacketBusyTypeDef;
typedef struct
{
PacketBusyTypeDef Busy; //Everything after Busy should be word-aligned
uint16_t Length __ALIGN_END; //Packet length includes CommandClass, Command, and Data
uint8_t CommandClass;
uint8_t Command;
uint8_t Data[USB_HS_MAX_PACKET_SIZE]; //Should (must?) be word-aligned, for USB copy routine
uint8_t RxCrc;
}
DownstreamPacketTypeDef;
typedef void (*FreePacketCallbackTypeDef)(DownstreamPacketTypeDef* freePacket);
typedef void (*SpiPacketReceivedCallbackTypeDef)(DownstreamPacketTypeDef* replyPacket);
void Downstream_InitInterface(void);
HAL_StatusTypeDef Downstream_GetFreePacket(FreePacketCallbackTypeDef callback);
DownstreamPacketTypeDef* Downstream_GetFreePacketImmediately(void);
void Downstream_ReleasePacket(DownstreamPacketTypeDef* packetToRelease);
HAL_StatusTypeDef Downstream_SendPacket(DownstreamPacketTypeDef* packetToWrite);
HAL_StatusTypeDef Downstream_GetPacket(SpiPacketReceivedCallbackTypeDef callback);
void Downstream_TxOkInterrupt(void);
void HAL_SPI_TxCpltCallback(SPI_HandleTypeDef *hspi);
void HAL_SPI_RxCpltCallback(SPI_HandleTypeDef *hspi);
void HAL_SPI_ErrorCallback(SPI_HandleTypeDef *hspi);
#endif /* INC_DOWNSTREAM_SPI_H_ */

@ -50,7 +50,7 @@
#define HAL_MODULE_ENABLED
//#define HAL_ADC_MODULE_ENABLED
//#define HAL_CAN_MODULE_ENABLED
#define HAL_CRC_MODULE_ENABLED
//#define HAL_CRC_MODULE_ENABLED
//#define HAL_CRYP_MODULE_ENABLED
//#define HAL_DAC_MODULE_ENABLED
//#define HAL_DCMI_MODULE_ENABLED

@ -47,8 +47,11 @@
/* The preemption priority for the IRQn channel.
* This parameter can be a value between 0 and 15
* A lower priority value indicates a higher priority. */
#define INT_PRIORITY_SYSTICK 2
#define INT_PRIORITY_OTG_FS 10
#define INT_PRIORITY_SPI_DMA 10 //SPI interacts heavily with USB_OTG,
#define INT_PRIORITY_OTG_FS 10 //so set them at the same priority.
/* Exported macro ------------------------------------------------------------*/
/* Exported functions ------------------------------------------------------- */

@ -1,401 +0,0 @@
/**
******************************************************************************
* @file stm32f4xx_hal_conf.h
* @brief HAL configuration file.
******************************************************************************
* @attention
*
* <h2><center>&copy; COPYRIGHT(c) 2015 STMicroelectronics</center></h2>
*
* Redistribution and use in source and binary forms, with or without modification,
* are permitted provided that the following conditions are met:
* 1. Redistributions of source code must retain the above copyright notice,
* this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright notice,
* this list of conditions and the following disclaimer in the documentation
* and/or other materials provided with the distribution.
* 3. Neither the name of STMicroelectronics nor the names of its contributors
* may be used to endorse or promote products derived from this software
* without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
* DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
* SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
* CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
******************************************************************************
*/
/* Define to prevent recursive inclusion -------------------------------------*/
#ifndef __STM32F4xx_HAL_CONF_H
#define __STM32F4xx_HAL_CONF_H
#ifdef __cplusplus
extern "C" {
#endif
/* Exported types ------------------------------------------------------------*/
/* Exported constants --------------------------------------------------------*/
/* ########################## Module Selection ############################## */
/**
* @brief This is the list of modules to be used in the HAL driver
*/
#define HAL_MODULE_ENABLED
//#define HAL_ADC_MODULE_ENABLED
//#define HAL_CAN_MODULE_ENABLED
#define HAL_CRC_MODULE_ENABLED
//#define HAL_CRYP_MODULE_ENABLED
//#define HAL_DAC_MODULE_ENABLED
//#define HAL_DCMI_MODULE_ENABLED
//#define HAL_DMA2D_MODULE_ENABLED
//#define HAL_ETH_MODULE_ENABLED
//#define HAL_NAND_MODULE_ENABLED
//#define HAL_NOR_MODULE_ENABLED
//#define HAL_PCCARD_MODULE_ENABLED
//#define HAL_SRAM_MODULE_ENABLED
//#define HAL_SDRAM_MODULE_ENABLED
//#define HAL_HASH_MODULE_ENABLED
//#define HAL_I2C_MODULE_ENABLED
//#define HAL_I2S_MODULE_ENABLED
//#define HAL_IWDG_MODULE_ENABLED
//#define HAL_LTDC_MODULE_ENABLED
//#define HAL_RNG_MODULE_ENABLED
//#define HAL_RTC_MODULE_ENABLED
//#define HAL_SAI_MODULE_ENABLED
//#define HAL_SD_MODULE_ENABLED
#define HAL_SPI_MODULE_ENABLED
//#define HAL_TIM_MODULE_ENABLED
//#define HAL_UART_MODULE_ENABLED
//#define HAL_USART_MODULE_ENABLED
//#define HAL_IRDA_MODULE_ENABLED
//#define HAL_SMARTCARD_MODULE_ENABLED
//#define HAL_WWDG_MODULE_ENABLED
#define HAL_PCD_MODULE_ENABLED
//#define HAL_HCD_MODULE_ENABLED
#define HAL_GPIO_MODULE_ENABLED
#define HAL_DMA_MODULE_ENABLED
#define HAL_RCC_MODULE_ENABLED
#define HAL_FLASH_MODULE_ENABLED
#define HAL_PWR_MODULE_ENABLED
#define HAL_CORTEX_MODULE_ENABLED
/* ########################## HSE/HSI Values adaptation ##################### */
/**
* @brief Adjust the value of External High Speed oscillator (HSE) used in your application.
* This value is used by the RCC HAL module to compute the system frequency
* (when HSE is used as system clock source, directly or through the PLL).
*/
#if !defined (HSE_VALUE)
#define HSE_VALUE ((uint32_t)8000000) /*!< Value of the External oscillator in Hz */
#endif /* HSE_VALUE */
#if !defined (HSE_STARTUP_TIMEOUT)
#define HSE_STARTUP_TIMEOUT ((uint32_t)500) /*!< Time out for HSE start up, in ms */
#endif /* HSE_STARTUP_TIMEOUT */
/**
* @brief Internal High Speed oscillator (HSI) value.
* This value is used by the RCC HAL module to compute the system frequency
* (when HSI is used as system clock source, directly or through the PLL).
*/
#if !defined (HSI_VALUE)
#define HSI_VALUE ((uint32_t)16000000) /*!< Value of the Internal oscillator in Hz*/
#endif /* HSI_VALUE */
/**
* @brief Internal Low Speed oscillator (LSI) value.
*/
#if !defined (LSI_VALUE)
#define LSI_VALUE ((uint32_t)32000)
#endif /* LSI_VALUE */ /*!< Value of the Internal Low Speed oscillator in Hz
The real value may vary depending on the variations
in voltage and temperature. */
/**
* @brief External Low Speed oscillator (LSE) value.
*/
#if !defined (LSE_VALUE)
#define LSE_VALUE ((uint32_t)32768) /*!< Value of the External Low Speed oscillator in Hz */
#endif /* LSE_VALUE */
/**
* @brief External clock source for I2S peripheral
* This value is used by the I2S HAL module to compute the I2S clock source
* frequency, this source is inserted directly through I2S_CKIN pad.
*/
#if !defined (EXTERNAL_CLOCK_VALUE)
#define EXTERNAL_CLOCK_VALUE ((uint32_t)12288000) /*!< Value of the External audio frequency in Hz*/
#endif /* EXTERNAL_CLOCK_VALUE */
/* Tip: To avoid modifying this file each time you need to use different HSE,
=== you can define the HSE value in your toolchain compiler preprocessor. */
/* ########################### System Configuration ######################### */
/**
* @brief This is the HAL system configuration section
*/
#define VDD_VALUE ((uint32_t)3300) /*!< Value of VDD in mv */
#define TICK_INT_PRIORITY ((uint32_t)0) /*!< tick interrupt priority */
#define USE_RTOS 0
#define PREFETCH_ENABLE 1
#define INSTRUCTION_CACHE_ENABLE 1
#define DATA_CACHE_ENABLE 1
/* ########################## Assert Selection ############################## */
/**
* @brief Uncomment the line below to expanse the "assert_param" macro in the
* HAL drivers code
*/
/* #define USE_FULL_ASSERT 1 */
/* ################## Ethernet peripheral configuration ##################### */
/* Section 1 : Ethernet peripheral configuration */
/* MAC ADDRESS: MAC_ADDR0:MAC_ADDR1:MAC_ADDR2:MAC_ADDR3:MAC_ADDR4:MAC_ADDR5 */
#define MAC_ADDR0 2
#define MAC_ADDR1 0
#define MAC_ADDR2 0
#define MAC_ADDR3 0
#define MAC_ADDR4 0
#define MAC_ADDR5 0
/* Definition of the Ethernet driver buffers size and count */
#define ETH_RX_BUF_SIZE ETH_MAX_PACKET_SIZE /* buffer size for receive */
#define ETH_TX_BUF_SIZE ETH_MAX_PACKET_SIZE /* buffer size for transmit */
#define ETH_RXBUFNB ((uint32_t)4) /* 4 Rx buffers of size ETH_RX_BUF_SIZE */
#define ETH_TXBUFNB ((uint32_t)4) /* 4 Tx buffers of size ETH_TX_BUF_SIZE */
/* Section 2: PHY configuration section */
/* DP83848 PHY Address*/
#define DP83848_PHY_ADDRESS 0x01
/* PHY Reset delay these values are based on a 1 ms Systick interrupt*/
#define PHY_RESET_DELAY ((uint32_t)0x000000FF)
/* PHY Configuration delay */
#define PHY_CONFIG_DELAY ((uint32_t)0x00000FFF)
#define PHY_READ_TO ((uint32_t)0x0000FFFF)
#define PHY_WRITE_TO ((uint32_t)0x0000FFFF)
/* Section 3: Common PHY Registers */
#define PHY_BCR ((uint16_t)0x00) /*!< Transceiver Basic Control Register */
#define PHY_BSR ((uint16_t)0x01) /*!< Transceiver Basic Status Register */
#define PHY_RESET ((uint16_t)0x8000) /*!< PHY Reset */
#define PHY_LOOPBACK ((uint16_t)0x4000) /*!< Select loop-back mode */
#define PHY_FULLDUPLEX_100M ((uint16_t)0x2100) /*!< Set the full-duplex mode at 100 Mb/s */
#define PHY_HALFDUPLEX_100M ((uint16_t)0x2000) /*!< Set the half-duplex mode at 100 Mb/s */
#define PHY_FULLDUPLEX_10M ((uint16_t)0x0100) /*!< Set the full-duplex mode at 10 Mb/s */
#define PHY_HALFDUPLEX_10M ((uint16_t)0x0000) /*!< Set the half-duplex mode at 10 Mb/s */
#define PHY_AUTONEGOTIATION ((uint16_t)0x1000) /*!< Enable auto-negotiation function */
#define PHY_RESTART_AUTONEGOTIATION ((uint16_t)0x0200) /*!< Restart auto-negotiation function */
#define PHY_POWERDOWN ((uint16_t)0x0800) /*!< Select the power down mode */
#define PHY_ISOLATE ((uint16_t)0x0400) /*!< Isolate PHY from MII */
#define PHY_AUTONEGO_COMPLETE ((uint16_t)0x0020) /*!< Auto-Negotiation process completed */
#define PHY_LINKED_STATUS ((uint16_t)0x0004) /*!< Valid link established */
#define PHY_JABBER_DETECTION ((uint16_t)0x0002) /*!< Jabber condition detected */
/* Section 4: Extended PHY Registers */
#define PHY_SR ((uint16_t)0x10) /*!< PHY status register Offset */
#define PHY_MICR ((uint16_t)0x11) /*!< MII Interrupt Control Register */
#define PHY_MISR ((uint16_t)0x12) /*!< MII Interrupt Status and Misc. Control Register */
#define PHY_LINK_STATUS ((uint16_t)0x0001) /*!< PHY Link mask */
#define PHY_SPEED_STATUS ((uint16_t)0x0002) /*!< PHY Speed mask */
#define PHY_DUPLEX_STATUS ((uint16_t)0x0004) /*!< PHY Duplex mask */
#define PHY_MICR_INT_EN ((uint16_t)0x0002) /*!< PHY Enable interrupts */
#define PHY_MICR_INT_OE ((uint16_t)0x0001) /*!< PHY Enable output interrupt events */
#define PHY_MISR_LINK_INT_EN ((uint16_t)0x0020) /*!< Enable Interrupt on change of link status */
#define PHY_LINK_INTERRUPT ((uint16_t)0x2000) /*!< PHY link status interrupt mask */
/* Includes ------------------------------------------------------------------*/
/**
* @brief Include module's header file
*/
#ifdef HAL_RCC_MODULE_ENABLED
#include "stm32f4xx_hal_rcc.h"
#endif /* HAL_RCC_MODULE_ENABLED */
#ifdef HAL_GPIO_MODULE_ENABLED
#include "stm32f4xx_hal_gpio.h"
#endif /* HAL_GPIO_MODULE_ENABLED */
#ifdef HAL_DMA_MODULE_ENABLED
#include "stm32f4xx_hal_dma.h"
#endif /* HAL_DMA_MODULE_ENABLED */
#ifdef HAL_CORTEX_MODULE_ENABLED
#include "stm32f4xx_hal_cortex.h"
#endif /* HAL_CORTEX_MODULE_ENABLED */
#ifdef HAL_ADC_MODULE_ENABLED
#include "stm32f4xx_hal_adc.h"
#endif /* HAL_ADC_MODULE_ENABLED */
#ifdef HAL_CAN_MODULE_ENABLED
#include "stm32f4xx_hal_can.h"
#endif /* HAL_CAN_MODULE_ENABLED */
#ifdef HAL_CRC_MODULE_ENABLED
#include "stm32f4xx_hal_crc.h"
#endif /* HAL_CRC_MODULE_ENABLED */
#ifdef HAL_CRYP_MODULE_ENABLED
#include "stm32f4xx_hal_cryp.h"
#endif /* HAL_CRYP_MODULE_ENABLED */
#ifdef HAL_DMA2D_MODULE_ENABLED
#include "stm32f4xx_hal_dma2d.h"
#endif /* HAL_DMA2D_MODULE_ENABLED */
#ifdef HAL_DAC_MODULE_ENABLED
#include "stm32f4xx_hal_dac.h"
#endif /* HAL_DAC_MODULE_ENABLED */
#ifdef HAL_DCMI_MODULE_ENABLED
#include "stm32f4xx_hal_dcmi.h"
#endif /* HAL_DCMI_MODULE_ENABLED */
#ifdef HAL_ETH_MODULE_ENABLED
#include "stm32f4xx_hal_eth.h"
#endif /* HAL_ETH_MODULE_ENABLED */
#ifdef HAL_FLASH_MODULE_ENABLED
#include "stm32f4xx_hal_flash.h"
#endif /* HAL_FLASH_MODULE_ENABLED */
#ifdef HAL_SRAM_MODULE_ENABLED
#include "stm32f4xx_hal_sram.h"
#endif /* HAL_SRAM_MODULE_ENABLED */
#ifdef HAL_NOR_MODULE_ENABLED
#include "stm32f4xx_hal_nor.h"
#endif /* HAL_NOR_MODULE_ENABLED */
#ifdef HAL_NAND_MODULE_ENABLED
#include "stm32f4xx_hal_nand.h"
#endif /* HAL_NAND_MODULE_ENABLED */
#ifdef HAL_PCCARD_MODULE_ENABLED
#include "stm32f4xx_hal_pccard.h"
#endif /* HAL_PCCARD_MODULE_ENABLED */
#ifdef HAL_SDRAM_MODULE_ENABLED
#include "stm32f4xx_hal_sdram.h"
#endif /* HAL_SDRAM_MODULE_ENABLED */
#ifdef HAL_HASH_MODULE_ENABLED
#include "stm32f4xx_hal_hash.h"
#endif /* HAL_HASH_MODULE_ENABLED */
#ifdef HAL_I2C_MODULE_ENABLED
#include "stm32f4xx_hal_i2c.h"
#endif /* HAL_I2C_MODULE_ENABLED */
#ifdef HAL_I2S_MODULE_ENABLED
#include "stm32f4xx_hal_i2s.h"
#endif /* HAL_I2S_MODULE_ENABLED */
#ifdef HAL_IWDG_MODULE_ENABLED
#include "stm32f4xx_hal_iwdg.h"
#endif /* HAL_IWDG_MODULE_ENABLED */
#ifdef HAL_LTDC_MODULE_ENABLED
#include "stm32f4xx_hal_ltdc.h"
#endif /* HAL_LTDC_MODULE_ENABLED */
#ifdef HAL_PWR_MODULE_ENABLED
#include "stm32f4xx_hal_pwr.h"
#endif /* HAL_PWR_MODULE_ENABLED */
#ifdef HAL_RNG_MODULE_ENABLED
#include "stm32f4xx_hal_rng.h"
#endif /* HAL_RNG_MODULE_ENABLED */
#ifdef HAL_RTC_MODULE_ENABLED
#include "stm32f4xx_hal_rtc.h"
#endif /* HAL_RTC_MODULE_ENABLED */
#ifdef HAL_SAI_MODULE_ENABLED
#include "stm32f4xx_hal_sai.h"
#endif /* HAL_SAI_MODULE_ENABLED */
#ifdef HAL_SD_MODULE_ENABLED
#include "stm32f4xx_hal_sd.h"
#endif /* HAL_SD_MODULE_ENABLED */
#ifdef HAL_SPI_MODULE_ENABLED
#include "stm32f4xx_hal_spi.h"
#endif /* HAL_SPI_MODULE_ENABLED */
#ifdef HAL_TIM_MODULE_ENABLED
#include "stm32f4xx_hal_tim.h"
#endif /* HAL_TIM_MODULE_ENABLED */
#ifdef HAL_UART_MODULE_ENABLED
#include "stm32f4xx_hal_uart.h"
#endif /* HAL_UART_MODULE_ENABLED */
#ifdef HAL_USART_MODULE_ENABLED
#include "stm32f4xx_hal_usart.h"
#endif /* HAL_USART_MODULE_ENABLED */
#ifdef HAL_IRDA_MODULE_ENABLED
#include "stm32f4xx_hal_irda.h"
#endif /* HAL_IRDA_MODULE_ENABLED */
#ifdef HAL_SMARTCARD_MODULE_ENABLED
#include "stm32f4xx_hal_smartcard.h"
#endif /* HAL_SMARTCARD_MODULE_ENABLED */
#ifdef HAL_WWDG_MODULE_ENABLED
#include "stm32f4xx_hal_wwdg.h"
#endif /* HAL_WWDG_MODULE_ENABLED */
#ifdef HAL_PCD_MODULE_ENABLED
#include "stm32f4xx_hal_pcd.h"
#endif /* HAL_PCD_MODULE_ENABLED */
#ifdef HAL_HCD_MODULE_ENABLED
#include "stm32f4xx_hal_hcd.h"
#endif /* HAL_HCD_MODULE_ENABLED */
/* Exported macro ------------------------------------------------------------*/
#ifdef USE_FULL_ASSERT
/**
* @brief The assert_param macro is used for function's parameters check.
* @param expr: If expr is false, it calls assert_failed function
* which reports the name of the source file and the source
* line number of the call that failed.
* If expr is true, it returns no value.
* @retval None
*/
#define assert_param(expr) ((expr) ? (void)0 : assert_failed((uint8_t *)__FILE__, __LINE__))
/* Exported functions ------------------------------------------------------- */
void assert_failed(uint8_t* file, uint32_t line);
#else
#define assert_param(expr) ((void)0)
#endif /* USE_FULL_ASSERT */
#ifdef __cplusplus
}
#endif
#endif /* __STM32F4xx_HAL_CONF_H */
/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/

@ -1,58 +0,0 @@
/**
******************************************************************************
* @file stm32f4xx_it.h
* @date 03/02/2015 20:27:00
* @brief This file contains the headers of the interrupt handlers.
******************************************************************************
*
* COPYRIGHT(c) 2015 STMicroelectronics
*
* Redistribution and use in source and binary forms, with or without modification,
* are permitted provided that the following conditions are met:
* 1. Redistributions of source code must retain the above copyright notice,
* this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright notice,
* this list of conditions and the following disclaimer in the documentation
* and/or other materials provided with the distribution.
* 3. Neither the name of STMicroelectronics nor the names of its contributors
* may be used to endorse or promote products derived from this software
* without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
* DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
* SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
* CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
******************************************************************************
*/
/* Define to prevent recursive inclusion -------------------------------------*/
#ifndef __STM32F4xx_IT_H
#define __STM32F4xx_IT_H
#ifdef __cplusplus
extern "C" {
#endif
/* Includes ------------------------------------------------------------------*/
/* Exported types ------------------------------------------------------------*/
/* Exported constants --------------------------------------------------------*/
/* Exported macro ------------------------------------------------------------*/
/* Exported functions ------------------------------------------------------- */
void OTG_FS_IRQHandler(void);
void SysTick_Handler(void);
#ifdef __cplusplus
}
#endif
#endif /* __STM32F4xx_IT_H */
/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/

@ -46,7 +46,7 @@
extern USBD_HandleTypeDef hUsbDeviceFS;
/* USB_Device init function */
void MX_USB_DEVICE_Init(void);
void USB_Device_Init(void);
#ifdef __cplusplus
}

@ -74,6 +74,7 @@
* @{
*/
extern USBD_DescriptorsTypeDef FS_Desc;
extern const int8_t STORAGE_Inquirydata_FS[];
/**
* @}
*/

@ -1,101 +0,0 @@
/**
******************************************************************************
* @file : usbd_storage_if.h
* @author : MCD Application Team
* @version : V1.1.0
* @date : 19-March-2012
* @brief : header file for the usbd_storage_if.c file
******************************************************************************
* COPYRIGHT(c) 2015 STMicroelectronics
*
* Redistribution and use in source and binary forms, with or without modification,
* are permitted provided that the following conditions are met:
* 1. Redistributions of source code must retain the above copyright notice,
* this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright notice,
* this list of conditions and the following disclaimer in the documentation
* and/or other materials provided with the distribution.
* 3. Neither the name of STMicroelectronics nor the names of its contributors
* may be used to endorse or promote products derived from this software
* without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
* DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
* SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
* CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
******************************************************************************
*/
/* Define to prevent recursive inclusion -------------------------------------*/
#ifndef __USBD_STORAGE_IF_H_
#define __USBD_STORAGE_IF_H_
/* Includes ------------------------------------------------------------------*/
#include "usbd_msc.h"
/** @addtogroup STM32_USB_OTG_DEVICE_LIBRARY
* @{
*/
/** @defgroup USBD_STORAGE
* @brief header file for the USBD_STORAGE.c file
* @{
*/
/** @defgroup USBD_STORAGE_Exported_Defines
* @{
*/
/**
* @}
*/
/** @defgroup USBD_STORAGE_Exported_Types
* @{
*/
/**
* @}
*/
/** @defgroup USBD_STORAGE_Exported_Macros
* @{
*/
/**
* @}
*/
/** @defgroup USBD_STORAGE_Exported_Variables
* @{
*/
extern USBD_StorageTypeDef USBD_Storage_Interface_fops_FS;
/**
* @}
*/
/** @defgroup USBD_STORAGE_Exported_FunctionsPrototype
* @{
*/
/**
* @}
*/
#endif /* __USBD_STORAGE_IF_H_ */
/**
* @}
*/
/**
* @}
*/
/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/

@ -34,9 +34,10 @@
#endif
/* Includes ------------------------------------------------------------------*/
#include "usbd_msc_bot.h"
#include "usbd_msc_scsi.h"
#include "usbd_ioreq.h"
#include "usbd_msc_bot.h"
#include "usbd_msc_scsi.h"
#include "usbd_ioreq.h"
#include "downstream_spi.h"
/** @addtogroup USBD_MSC_BOT
* @{
@ -85,24 +86,26 @@ typedef struct _USBD_STORAGE
typedef struct
{
uint32_t max_lun;
uint32_t interface;
uint8_t bot_state;
uint8_t bot_status;
uint16_t bot_data_length;
uint8_t bot_data[MSC_MEDIA_PACKET];
USBD_MSC_BOT_CBWTypeDef cbw;
USBD_MSC_BOT_CSWTypeDef csw;
USBD_SCSI_SenseTypeDef scsi_sense [SENSE_LIST_DEEPTH];
uint32_t max_lun;
uint32_t interface;
uint8_t bot_state;
uint8_t bot_status;
uint16_t bot_data_length;
uint8_t* bot_data;
DownstreamPacketTypeDef* bot_packet; //Not NULL indicates we currently own a downstream packet buffer, and should free it when we are done.
USBD_MSC_BOT_CBWTypeDef cbw;
USBD_MSC_BOT_CSWTypeDef csw;
USBD_SCSI_SenseTypeDef scsi_sense [SENSE_LIST_DEPTH];
uint8_t scsi_sense_head;
uint8_t scsi_sense_tail;
uint16_t scsi_blk_size;
uint32_t scsi_blk_nbr;
uint16_t scsi_blk_size; //LOGICAL BLOCK LENGTH IN BYTES: Number of bytes of user data in a logical block [SBC-4]
uint32_t scsi_blk_nbr; //This is total block count = LOGICAL BLOCK ADDRESS + 1. LOGICAL BLOCK ADDRESS: LBA of the last logical block on the direct access block device [SBC-4]
uint32_t scsi_blk_addr; //LOGICAL BLOCK ADDRESS: Starting with the logical block referenced [SBC-4]
uint16_t scsi_blk_len; //TRANSFER LENGTH: Number of contiguous logical blocks of data that shall be read [SBC-4]
uint32_t scsi_blk_addr;
uint32_t scsi_blk_len;
}
USBD_MSC_BOT_HandleTypeDef;

@ -113,7 +113,6 @@ USBD_MSC_BOT_CSWTypeDef;
/** @defgroup USBD_CORE_Exported_Types
* @{
*/
/**
* @}
*/
@ -125,10 +124,13 @@ void MSC_BOT_Reset (USBD_HandleTypeDef *pdev);
void MSC_BOT_DeInit (USBD_HandleTypeDef *pdev);
void MSC_BOT_DataIn (USBD_HandleTypeDef *pdev,
uint8_t epnum);
void MSC_BOT_DataOut (USBD_HandleTypeDef *pdev,
uint8_t epnum);
void MSC_BOT_DataIn_Callback(int8_t result);
void MSC_BOT_DataOut_Callback(int8_t result);
void MSC_BOT_CBW_Decode_Callback(int8_t result);
void MSC_BOT_SendCSW (USBD_HandleTypeDef *pdev,
uint8_t CSW_Status);

@ -34,7 +34,7 @@
#endif
/* Includes ------------------------------------------------------------------*/
#include "usbd_conf.h"
#include <usbd_config.h>
/** @addtogroup STM32_USB_DEVICE_LIBRARY
* @{

@ -49,7 +49,7 @@
* @{
*/
#define SENSE_LIST_DEEPTH 4
#define SENSE_LIST_DEPTH 4
/* SCSI Commands */
#define SCSI_FORMAT_UNIT 0x04
@ -99,15 +99,15 @@
#define INVALID_CDB 0x20
#define INVALID_FIELED_IN_COMMAND 0x24
#define INVALID_FIELD_IN_COMMAND 0x24
#define PARAMETER_LIST_LENGTH_ERROR 0x1A
#define INVALID_FIELD_IN_PARAMETER_LIST 0x26
#define ADDRESS_OUT_OF_RANGE 0x21
#define MEDIUM_NOT_PRESENT 0x3A
#define MEDIUM_HAVE_CHANGED 0x28
#define MEDIUM_HAS_CHANGED 0x28
#define WRITE_PROTECTED 0x27
#define UNRECOVERED_READ_ERROR 0x11
#define WRITE_FAULT 0x03
#define UNRECOVERED_READ_ERROR 0x11
#define WRITE_FAULT 0x03
#define READ_FORMAT_CAPACITY_DATA_LEN 0x0C
#define READ_CAPACITY10_DATA_LEN 0x08
@ -145,6 +145,10 @@ typedef struct _SENSE_ITEM {
char *pData;
} w;
} USBD_SCSI_SenseTypeDef;
typedef void (*SCSI_ProcessCmdCallbackTypeDef)(int8_t result);
/**
* @}
*/
@ -167,9 +171,10 @@ typedef struct _SENSE_ITEM {
/** @defgroup USBD_SCSI_Exported_FunctionsPrototype
* @{
*/
int8_t SCSI_ProcessCmd(USBD_HandleTypeDef *pdev,
void SCSI_ProcessCmd(USBD_HandleTypeDef *pdev,
uint8_t lun,
uint8_t *cmd);
uint8_t *cmd,
SCSI_ProcessCmdCallbackTypeDef process_cmd_callback);
void SCSI_SenseCode(USBD_HandleTypeDef *pdev,
uint8_t lun,

@ -42,7 +42,8 @@
/* Includes ------------------------------------------------------------------*/
#include "usbd_msc.h"
#include "downstream_interface_def.h"
#include "downstream_spi.h"
/** @addtogroup STM32_USB_DEVICE_LIBRARY
* @{
@ -106,6 +107,8 @@ uint8_t *USBD_MSC_GetOtherSpeedCfgDesc (uint16_t *length);
uint8_t *USBD_MSC_GetDeviceQualifierDescriptor (uint16_t *length);
uint8_t USBD_MSC_BufferFreed(USBD_HandleTypeDef *pdev);
/**
* @}
@ -129,6 +132,7 @@ USBD_ClassTypeDef USBD_MSC =
NULL, /*SOF */
NULL,
NULL,
USBD_MSC_BufferFreed,
USBD_MSC_GetHSCfgDesc,
USBD_MSC_GetFSCfgDesc,
USBD_MSC_GetOtherSpeedCfgDesc,
@ -181,7 +185,7 @@ __ALIGN_BEGIN uint8_t USBD_MSC_CfgHSDesc[USB_MSC_CONFIG_DESC_SIZ] __ALIGN_END =
/* USB Mass storage device Configuration Descriptor */
/* All Descriptors (Configuration, Interface, Endpoint, Class, Vendor */
uint8_t USBD_MSC_CfgFSDesc[USB_MSC_CONFIG_DESC_SIZ] __ALIGN_END =
__ALIGN_BEGIN uint8_t USBD_MSC_CfgFSDesc[USB_MSC_CONFIG_DESC_SIZ] __ALIGN_END =
{
0x09, /* bLength: Configuation Descriptor size */
@ -226,7 +230,7 @@ uint8_t USBD_MSC_CfgFSDesc[USB_MSC_CONFIG_DESC_SIZ] __ALIGN_END =
__ALIGN_BEGIN uint8_t USBD_MSC_OtherSpeedCfgDesc[USB_MSC_CONFIG_DESC_SIZ] __ALIGN_END =
{
0x09, /* bLength: Configuation Descriptor size */
0x09, /* bLength: Configuration Descriptor size */
USB_DESC_TYPE_OTHER_SPEED_CONFIGURATION,
USB_MSC_CONFIG_DESC_SIZ,
@ -338,6 +342,7 @@ uint8_t USBD_MSC_Init (USBD_HandleTypeDef *pdev,
{
/* Init the BOT layer */
MSC_BOT_Init(pdev);
((USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData)->bot_packet = NULL;
ret = 0;
}
@ -398,7 +403,7 @@ uint8_t USBD_MSC_Setup (USBD_HandleTypeDef *pdev, USBD_SetupReqTypedef *req)
(req->wLength == 1) &&
((req->bmRequest & 0x80) == 0x80))
{
hmsc->max_lun = ((USBD_StorageTypeDef *)pdev->pUserData)->GetMaxLun();
hmsc->max_lun = (UPSTREAM_LUN_NBR - 1);
USBD_CtlSendData (pdev,
(uint8_t *)&hmsc->max_lun,
1);
@ -530,6 +535,18 @@ uint8_t USBD_MSC_DataOut (USBD_HandleTypeDef *pdev,
return 0;
}
uint8_t USBD_MSC_BufferFreed(USBD_HandleTypeDef *pdev)
{
if (((USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData)->bot_packet != NULL)
{
Downstream_ReleasePacket(((USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData)->bot_packet);
((USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData)->bot_packet = NULL;
}
return 0;
}
/**
* @brief USBD_MSC_GetHSCfgDesc
* return configuration descriptor
@ -577,20 +594,6 @@ uint8_t *USBD_MSC_GetDeviceQualifierDescriptor (uint16_t *length)
return USBD_MSC_DeviceQualifierDesc;
}
/**
* @brief USBD_MSC_RegisterStorage
* @param fops: storage callback
* @retval status
*/
uint8_t USBD_MSC_RegisterStorage (USBD_HandleTypeDef *pdev,
USBD_StorageTypeDef *fops)
{
if(fops != NULL)
{
pdev->pUserData= fops;
}
return 0;
}
/**
* @}

@ -70,6 +70,9 @@
* @{
*/
USBD_HandleTypeDef *MSC_BOT_pdev;
USBD_MSC_BOT_HandleTypeDef *MSC_BOT_hmsc;
/**
* @}
*/
@ -112,8 +115,6 @@ void MSC_BOT_Init (USBD_HandleTypeDef *pdev)
hmsc->scsi_sense_tail = 0;
hmsc->scsi_sense_head = 0;
((USBD_StorageTypeDef *)pdev->pUserData)->Init(0);
USBD_LL_FlushEP(pdev, MSC_EPOUT_ADDR);
USBD_LL_FlushEP(pdev, MSC_EPIN_ADDR);
@ -171,24 +172,32 @@ void MSC_BOT_DataIn (USBD_HandleTypeDef *pdev,
switch (hmsc->bot_state)
{
case USBD_BOT_DATA_IN:
if(SCSI_ProcessCmd(pdev,
hmsc->cbw.bLUN,
&hmsc->cbw.CB[0]) < 0)
{
MSC_BOT_SendCSW (pdev, USBD_CSW_CMD_FAILED);
}
MSC_BOT_pdev = pdev;
SCSI_ProcessCmd(pdev,
hmsc->cbw.bLUN,
&hmsc->cbw.CB[0],
MSC_BOT_DataIn_Callback);
break;
case USBD_BOT_SEND_DATA:
case USBD_BOT_LAST_DATA_IN:
MSC_BOT_SendCSW (pdev, USBD_CSW_CMD_PASSED);
break;
default:
break;
}
}
void MSC_BOT_DataIn_Callback(int8_t result)
{
if (result < 0)
{
MSC_BOT_SendCSW (MSC_BOT_pdev, USBD_CSW_CMD_FAILED);
}
}
/**
* @brief MSC_BOT_DataOut
* Process MSC OUT data
@ -209,13 +218,11 @@ void MSC_BOT_DataOut (USBD_HandleTypeDef *pdev,
case USBD_BOT_DATA_OUT:
if(SCSI_ProcessCmd(pdev,
hmsc->cbw.bLUN,
&hmsc->cbw.CB[0]) < 0)
{
MSC_BOT_SendCSW (pdev, USBD_CSW_CMD_FAILED);
}
MSC_BOT_pdev = pdev;
SCSI_ProcessCmd(pdev,
hmsc->cbw.bLUN,
&hmsc->cbw.CB[0],
MSC_BOT_DataOut_Callback);
break;
default:
@ -223,6 +230,15 @@ void MSC_BOT_DataOut (USBD_HandleTypeDef *pdev,
}
}
void MSC_BOT_DataOut_Callback(int8_t result)
{
if (result < 0)
{
MSC_BOT_SendCSW (MSC_BOT_pdev, USBD_CSW_CMD_FAILED);
}
}
/**
* @brief MSC_BOT_CBW_Decode
* Decode the CBW command and set the BOT state machine accordingly
@ -254,40 +270,51 @@ static void MSC_BOT_CBW_Decode (USBD_HandleTypeDef *pdev)
}
else
{
if(SCSI_ProcessCmd(pdev,
hmsc->cbw.bLUN,
&hmsc->cbw.CB[0]) < 0)
{
if(hmsc->bot_state == USBD_BOT_NO_DATA)
{
MSC_BOT_SendCSW (pdev,
USBD_CSW_CMD_FAILED);
}
else
{
MSC_BOT_Abort(pdev);
}
}
/*Burst xfer handled internally*/
else if ((hmsc->bot_state != USBD_BOT_DATA_IN) &&
(hmsc->bot_state != USBD_BOT_DATA_OUT) &&
(hmsc->bot_state != USBD_BOT_LAST_DATA_IN))
{
if (hmsc->bot_data_length > 0)
{
MSC_BOT_SendData(pdev,
hmsc->bot_data,
hmsc->bot_data_length);
}
else if (hmsc->bot_data_length == 0)
{
MSC_BOT_SendCSW (pdev,
USBD_CSW_CMD_PASSED);
}
}
MSC_BOT_pdev = pdev;
MSC_BOT_hmsc = hmsc;
SCSI_ProcessCmd(pdev,
hmsc->cbw.bLUN,
&hmsc->cbw.CB[0],
MSC_BOT_CBW_Decode_Callback);
}
}
void MSC_BOT_CBW_Decode_Callback(int8_t result)
{
if (result < 0)
{
if(MSC_BOT_hmsc->bot_state == USBD_BOT_NO_DATA)
{
MSC_BOT_SendCSW (MSC_BOT_pdev,
USBD_CSW_CMD_FAILED);
}
else
{
MSC_BOT_Abort(MSC_BOT_pdev);
}
}
/*Burst xfer handled internally*/
else if ((MSC_BOT_hmsc->bot_state != USBD_BOT_DATA_IN) &&
(MSC_BOT_hmsc->bot_state != USBD_BOT_DATA_OUT) &&
(MSC_BOT_hmsc->bot_state != USBD_BOT_LAST_DATA_IN))
{
if (MSC_BOT_hmsc->bot_data_length > 0)
{
MSC_BOT_SendData(MSC_BOT_pdev,
MSC_BOT_hmsc->bot_data,
MSC_BOT_hmsc->bot_data_length);
}
else if (MSC_BOT_hmsc->bot_data_length == 0)
{
MSC_BOT_SendCSW (MSC_BOT_pdev,
USBD_CSW_CMD_PASSED);
}
}
}
/**
* @brief MSC_BOT_SendData
* Send the requested data

@ -30,7 +30,10 @@
#include "usbd_msc_scsi.h"
#include "usbd_msc.h"
#include "usbd_msc_data.h"
#include "usbd_descriptors.h"
#include "downstream_interface_def.h"
#include "downstream_interface_msc.h"
#include "downstream_spi.h"
/** @addtogroup STM32_USB_DEVICE_LIBRARY
@ -72,6 +75,13 @@
* @{
*/
USBD_HandleTypeDef *SCSI_ProcessCmd_pdev;
uint8_t SCSI_ProcessCmd_lun;
uint8_t *SCSI_ProcessCmd_params;
SCSI_ProcessCmdCallbackTypeDef SCSI_ProcessCmd_callback;
USBD_MSC_BOT_HandleTypeDef *SCSI_ProcessCmd_hmsc;
/**
* @}
*/
@ -80,26 +90,33 @@
/** @defgroup MSC_SCSI_Private_FunctionPrototypes
* @{
*/
static int8_t SCSI_TestUnitReady(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params);
static int8_t SCSI_Inquiry(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params);
static int8_t SCSI_ReadFormatCapacity(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params);
static int8_t SCSI_ReadCapacity10(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params);
static int8_t SCSI_RequestSense (USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params);
static int8_t SCSI_StartStopUnit(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params);
static int8_t SCSI_ModeSense6 (USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params);
static int8_t SCSI_ModeSense10 (USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params);
static int8_t SCSI_Write10(USBD_HandleTypeDef *pdev, uint8_t lun , uint8_t *params);
static int8_t SCSI_Read10(USBD_HandleTypeDef *pdev, uint8_t lun , uint8_t *params);
static int8_t SCSI_Verify10(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params);
static int8_t SCSI_CheckAddressRange (USBD_HandleTypeDef *pdev,
uint8_t lun ,
uint32_t blk_offset ,
uint16_t blk_nbr);
static int8_t SCSI_ProcessRead (USBD_HandleTypeDef *pdev,
uint8_t lun);
static int8_t SCSI_ProcessWrite (USBD_HandleTypeDef *pdev,
uint8_t lun);
static void SCSI_TestUnitReady(void);
static void SCSI_Inquiry(void);
static void SCSI_ReadFormatCapacity(void);
static void SCSI_ReadCapacity10(void);
static void SCSI_RequestSense (void);
static void SCSI_StartStopUnit(void);
static void SCSI_ModeSense6 (void);
static void SCSI_ModeSense10 (void);
static void SCSI_Write10(void);
static void SCSI_Read10(void);
static void SCSI_Verify10(void);
static int8_t SCSI_CheckAddressRange (uint32_t blk_offset , uint16_t blk_nbr);
void SCSI_TestUnitReadyCallback(HAL_StatusTypeDef result);
void SCSI_ReadCapacity10Callback(HAL_StatusTypeDef result,
uint32_t result_uint[],
DownstreamPacketTypeDef* downstreamPacket);
void SCSI_ReadFormatCapacityCallback(HAL_StatusTypeDef result,
uint32_t result_uint[],
DownstreamPacketTypeDef* packetToUse);
void SCSI_Read10BeginCallback(HAL_StatusTypeDef result);
void SCSI_Read10ReplyCallback(HAL_StatusTypeDef result,
DownstreamPacketTypeDef* downstreamPacket);
void SCSI_Write10BeginCallback(HAL_StatusTypeDef result);
void SCSI_Write10FreePacketCallback(DownstreamPacketTypeDef* freePacket);
/**
* @}
*/
@ -118,54 +135,74 @@ static int8_t SCSI_ProcessWrite (USBD_HandleTypeDef *pdev,
* @param params: Command parameters
* @retval status
*/
int8_t SCSI_ProcessCmd(USBD_HandleTypeDef *pdev,
uint8_t lun,
uint8_t *params)
void SCSI_ProcessCmd(USBD_HandleTypeDef *pdev,
uint8_t lun,
uint8_t *params,
SCSI_ProcessCmdCallbackTypeDef callback)
{
//Save all our parameters for easy access in callback routines
SCSI_ProcessCmd_pdev = pdev;
SCSI_ProcessCmd_params = params;
SCSI_ProcessCmd_lun = lun;
SCSI_ProcessCmd_callback = callback;
SCSI_ProcessCmd_hmsc = (USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData;
switch (params[0])
{
case SCSI_TEST_UNIT_READY:
return SCSI_TestUnitReady(pdev, lun, params);
SCSI_TestUnitReady();
return;
case SCSI_REQUEST_SENSE:
return SCSI_RequestSense (pdev, lun, params);
SCSI_RequestSense();
return;
case SCSI_INQUIRY:
return SCSI_Inquiry(pdev, lun, params);
SCSI_Inquiry();
return;
case SCSI_START_STOP_UNIT:
return SCSI_StartStopUnit(pdev, lun, params);
SCSI_StartStopUnit();
return;
case SCSI_ALLOW_MEDIUM_REMOVAL:
return SCSI_StartStopUnit(pdev, lun, params);
SCSI_StartStopUnit();
return;
case SCSI_MODE_SENSE6:
return SCSI_ModeSense6 (pdev, lun, params);
SCSI_ModeSense6();
return;
case SCSI_MODE_SENSE10:
return SCSI_ModeSense10 (pdev, lun, params);
SCSI_ModeSense10();
return;
case SCSI_READ_FORMAT_CAPACITIES:
return SCSI_ReadFormatCapacity(pdev, lun, params);
SCSI_ReadFormatCapacity();
return;
case SCSI_READ_CAPACITY10:
return SCSI_ReadCapacity10(pdev, lun, params);
SCSI_ReadCapacity10();
return;
case SCSI_READ10:
return SCSI_Read10(pdev, lun, params);
SCSI_Read10();
return;
case SCSI_WRITE10:
return SCSI_Write10(pdev, lun, params);
SCSI_Write10();
return;
case SCSI_VERIFY10:
return SCSI_Verify10(pdev, lun, params);
SCSI_Verify10();
return;
default:
SCSI_SenseCode(pdev,
lun,
ILLEGAL_REQUEST,
INVALID_CDB);
return -1;
SCSI_ProcessCmd_callback(-1);
}
}
@ -177,34 +214,53 @@ int8_t SCSI_ProcessCmd(USBD_HandleTypeDef *pdev,
* @param params: Command parameters
* @retval status
*/
static int8_t SCSI_TestUnitReady(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params)
void SCSI_TestUnitReady(void)
{
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData;
/* case 9 : Hi > D0 */
if (hmsc->cbw.dDataLength != 0)
if (SCSI_ProcessCmd_hmsc->cbw.dDataLength != 0)
{
SCSI_SenseCode(pdev,
hmsc->cbw.bLUN,
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
ILLEGAL_REQUEST,
INVALID_CDB);
return -1;
SCSI_ProcessCmd_callback(-1);
return;
}
if(((USBD_StorageTypeDef *)pdev->pUserData)->IsReady(lun) !=0 )
if (SCSI_ProcessCmd_lun >= UPSTREAM_LUN_NBR)
{
SCSI_SenseCode(pdev,
lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
SCSI_TestUnitReadyCallback(HAL_ERROR);
return;
}
hmsc->bot_state = USBD_BOT_NO_DATA;
return -1;
if (DownstreamInterface_TestReady(SCSI_TestUnitReadyCallback) != HAL_OK)
{
SCSI_TestUnitReadyCallback(HAL_ERROR);
}
hmsc->bot_data_length = 0;
return 0;
}
void SCSI_TestUnitReadyCallback(HAL_StatusTypeDef result)
{
if (result != HAL_OK)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
SCSI_ProcessCmd_hmsc->bot_state = USBD_BOT_NO_DATA;
SCSI_ProcessCmd_callback(-1);
return;
}
//Success!
SCSI_ProcessCmd_hmsc->bot_data_length = 0;
SCSI_ProcessCmd_callback(0);
}
/**
* @brief SCSI_Inquiry
* Process Inquiry command
@ -212,36 +268,40 @@ static int8_t SCSI_TestUnitReady(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t
* @param params: Command parameters
* @retval status
*/
static int8_t SCSI_Inquiry(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params)
static void SCSI_Inquiry(void)
{
uint8_t* pPage;
uint16_t len;
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData;
if (params[1] & 0x01)/*Evpd is set*/
{
pPage = (uint8_t *)MSC_Page00_Inquiry_Data;
len = LENGTH_INQUIRY_PAGE00;
}
else
{
pPage = (uint8_t *)&((USBD_StorageTypeDef *)pdev->pUserData)->pInquiry[lun * STANDARD_INQUIRY_DATA_LEN];
len = pPage[4] + 5;
if (params[4] <= len)
{
len = params[4];
}
}
hmsc->bot_data_length = len;
while (len)
{
len--;
hmsc->bot_data[len] = pPage[len];
}
return 0;
uint8_t* pPage;
uint16_t len;
DownstreamPacketTypeDef* freePacket;
freePacket = Downstream_GetFreePacketImmediately();
SCSI_ProcessCmd_hmsc->bot_packet = freePacket;
SCSI_ProcessCmd_hmsc->bot_data = freePacket->Data;
if (SCSI_ProcessCmd_params[1] & 0x01)/*Evpd is set*/
{
pPage = (uint8_t *)MSC_Page00_Inquiry_Data;
len = LENGTH_INQUIRY_PAGE00;
}
else
{
//Return the same info for any LUN requested
pPage = (uint8_t *)&STORAGE_Inquirydata_FS;
len = pPage[4] + 5;
if (SCSI_ProcessCmd_params[4] <= len)
{
len = SCSI_ProcessCmd_params[4];
}
}
SCSI_ProcessCmd_hmsc->bot_data_length = len;
while (len)
{
len--;
SCSI_ProcessCmd_hmsc->bot_data[len] = pPage[len];
}
SCSI_ProcessCmd_callback(0);
}
/**
@ -251,35 +311,49 @@ static int8_t SCSI_Inquiry(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *par
* @param params: Command parameters
* @retval status
*/
static int8_t SCSI_ReadCapacity10(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params)
static void SCSI_ReadCapacity10(void)
{
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData;
if(((USBD_StorageTypeDef *)pdev->pUserData)->GetCapacity(lun, &hmsc->scsi_blk_nbr, &hmsc->scsi_blk_size) != 0)
{
SCSI_SenseCode(pdev,
lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
return -1;
}
else
{
hmsc->bot_data[0] = (uint8_t)((hmsc->scsi_blk_nbr - 1) >> 24);
hmsc->bot_data[1] = (uint8_t)((hmsc->scsi_blk_nbr - 1) >> 16);
hmsc->bot_data[2] = (uint8_t)((hmsc->scsi_blk_nbr - 1) >> 8);
hmsc->bot_data[3] = (uint8_t)(hmsc->scsi_blk_nbr - 1);
if (DownstreamInterface_GetCapacity(SCSI_ReadCapacity10Callback) != HAL_OK)
{
SCSI_ReadCapacity10Callback(HAL_ERROR, NULL, NULL);
}
}
hmsc->bot_data[4] = (uint8_t)(hmsc->scsi_blk_size >> 24);
hmsc->bot_data[5] = (uint8_t)(hmsc->scsi_blk_size >> 16);
hmsc->bot_data[6] = (uint8_t)(hmsc->scsi_blk_size >> 8);
hmsc->bot_data[7] = (uint8_t)(hmsc->scsi_blk_size);
hmsc->bot_data_length = 8;
return 0;
}
void SCSI_ReadCapacity10Callback(HAL_StatusTypeDef result,
uint32_t result_uint[],
DownstreamPacketTypeDef* downstreamPacket)
{
if (result != HAL_OK)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
SCSI_ProcessCmd_callback(-1);
return;
}
SCSI_ProcessCmd_hmsc->bot_packet = downstreamPacket;
SCSI_ProcessCmd_hmsc->bot_data = downstreamPacket->Data;
SCSI_ProcessCmd_hmsc->scsi_blk_nbr = result_uint[0];
SCSI_ProcessCmd_hmsc->scsi_blk_size = result_uint[1];
SCSI_ProcessCmd_hmsc->bot_data[0] = (uint8_t)((SCSI_ProcessCmd_hmsc->scsi_blk_nbr - 1) >> 24);
SCSI_ProcessCmd_hmsc->bot_data[1] = (uint8_t)((SCSI_ProcessCmd_hmsc->scsi_blk_nbr - 1) >> 16);
SCSI_ProcessCmd_hmsc->bot_data[2] = (uint8_t)((SCSI_ProcessCmd_hmsc->scsi_blk_nbr - 1) >> 8);
SCSI_ProcessCmd_hmsc->bot_data[3] = (uint8_t)(SCSI_ProcessCmd_hmsc->scsi_blk_nbr - 1);
SCSI_ProcessCmd_hmsc->bot_data[4] = (uint8_t)(SCSI_ProcessCmd_hmsc->scsi_blk_size >> 24);
SCSI_ProcessCmd_hmsc->bot_data[5] = (uint8_t)(SCSI_ProcessCmd_hmsc->scsi_blk_size >> 16);
SCSI_ProcessCmd_hmsc->bot_data[6] = (uint8_t)(SCSI_ProcessCmd_hmsc->scsi_blk_size >> 8);
SCSI_ProcessCmd_hmsc->bot_data[7] = (uint8_t)(SCSI_ProcessCmd_hmsc->scsi_blk_size);
SCSI_ProcessCmd_hmsc->bot_data_length = 8;
SCSI_ProcessCmd_callback(0);
}
/**
* @brief SCSI_ReadFormatCapacity
* Process Read Format Capacity command
@ -287,44 +361,50 @@ static int8_t SCSI_ReadCapacity10(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_
* @param params: Command parameters
* @retval status
*/
static int8_t SCSI_ReadFormatCapacity(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params)
static void SCSI_ReadFormatCapacity(void)
{
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData;
uint16_t blk_size;
uint32_t blk_nbr;
uint16_t i;
if (DownstreamInterface_GetCapacity(SCSI_ReadFormatCapacityCallback) != HAL_OK)
{
SCSI_ReadFormatCapacityCallback(HAL_ERROR, NULL, NULL);
}
}
for(i=0 ; i < 12 ; i++)
{
hmsc->bot_data[i] = 0;
}
if(((USBD_StorageTypeDef *)pdev->pUserData)->GetCapacity(lun, &blk_nbr, &blk_size) != 0)
{
SCSI_SenseCode(pdev,
lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
return -1;
}
else
{
hmsc->bot_data[3] = 0x08;
hmsc->bot_data[4] = (uint8_t)((blk_nbr - 1) >> 24);
hmsc->bot_data[5] = (uint8_t)((blk_nbr - 1) >> 16);
hmsc->bot_data[6] = (uint8_t)((blk_nbr - 1) >> 8);
hmsc->bot_data[7] = (uint8_t)(blk_nbr - 1);
hmsc->bot_data[8] = 0x02;
hmsc->bot_data[9] = (uint8_t)(blk_size >> 16);
hmsc->bot_data[10] = (uint8_t)(blk_size >> 8);
hmsc->bot_data[11] = (uint8_t)(blk_size);
hmsc->bot_data_length = 12;
return 0;
}
void SCSI_ReadFormatCapacityCallback(HAL_StatusTypeDef result,
uint32_t result_uint[],
DownstreamPacketTypeDef* packetToUse)
{
if (result != HAL_OK)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
SCSI_ProcessCmd_callback(-1);
return;
}
SCSI_ProcessCmd_hmsc->bot_packet = packetToUse;
SCSI_ProcessCmd_hmsc->bot_data = packetToUse->Data;
SCSI_ProcessCmd_hmsc->bot_data[0] = 0;
SCSI_ProcessCmd_hmsc->bot_data[1] = 0;
SCSI_ProcessCmd_hmsc->bot_data[2] = 0;
SCSI_ProcessCmd_hmsc->bot_data[3] = 0x08;
SCSI_ProcessCmd_hmsc->bot_data[4] = (uint8_t)((result_uint[0] - 1) >> 24);
SCSI_ProcessCmd_hmsc->bot_data[5] = (uint8_t)((result_uint[0] - 1) >> 16);
SCSI_ProcessCmd_hmsc->bot_data[6] = (uint8_t)((result_uint[0] - 1) >> 8);
SCSI_ProcessCmd_hmsc->bot_data[7] = (uint8_t)(result_uint[0] - 1);
SCSI_ProcessCmd_hmsc->bot_data[8] = 0x02;
SCSI_ProcessCmd_hmsc->bot_data[9] = (uint8_t)(result_uint[1] >> 16);
SCSI_ProcessCmd_hmsc->bot_data[10] = (uint8_t)(result_uint[1] >> 8);
SCSI_ProcessCmd_hmsc->bot_data[11] = (uint8_t)(result_uint[1]);
SCSI_ProcessCmd_hmsc->bot_data_length = 12;
SCSI_ProcessCmd_callback(0);
}
/**
* @brief SCSI_ModeSense6
* Process Mode Sense6 command
@ -332,18 +412,23 @@ static int8_t SCSI_ReadFormatCapacity(USBD_HandleTypeDef *pdev, uint8_t lun, ui
* @param params: Command parameters
* @retval status
*/
static int8_t SCSI_ModeSense6 (USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params)
static void SCSI_ModeSense6 (void)
{
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData;
uint16_t len = 8 ;
hmsc->bot_data_length = len;
uint16_t len = 8;
DownstreamPacketTypeDef* freePacket;
while (len)
{
len--;
hmsc->bot_data[len] = MSC_Mode_Sense6_data[len];
}
return 0;
freePacket = Downstream_GetFreePacketImmediately();
SCSI_ProcessCmd_hmsc->bot_packet = freePacket;
SCSI_ProcessCmd_hmsc->bot_data = freePacket->Data;
SCSI_ProcessCmd_hmsc->bot_data_length = len;
while (len)
{
len--;
SCSI_ProcessCmd_hmsc->bot_data[len] = MSC_Mode_Sense6_data[len];
}
SCSI_ProcessCmd_callback(0);
}
/**
@ -353,19 +438,23 @@ static int8_t SCSI_ModeSense6 (USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *
* @param params: Command parameters
* @retval status
*/
static int8_t SCSI_ModeSense10 (USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params)
static void SCSI_ModeSense10(void)
{
uint16_t len = 8;
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData;
uint16_t len = 8;
DownstreamPacketTypeDef* freePacket;
hmsc->bot_data_length = len;
freePacket = Downstream_GetFreePacketImmediately();
SCSI_ProcessCmd_hmsc->bot_packet = freePacket;
SCSI_ProcessCmd_hmsc->bot_data = freePacket->Data;
while (len)
{
len--;
hmsc->bot_data[len] = MSC_Mode_Sense10_data[len];
}
return 0;
SCSI_ProcessCmd_hmsc->bot_data_length = len;
while (len)
{
len--;
SCSI_ProcessCmd_hmsc->bot_data[len] = MSC_Mode_Sense10_data[len];
}
SCSI_ProcessCmd_callback(0);
}
/**
@ -376,38 +465,41 @@ static int8_t SCSI_ModeSense10 (USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t
* @retval status
*/
static int8_t SCSI_RequestSense (USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params)
static void SCSI_RequestSense(void)
{
uint8_t i;
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData;
for(i=0 ; i < REQUEST_SENSE_DATA_LEN ; i++)
{
hmsc->bot_data[i] = 0;
}
hmsc->bot_data[0] = 0x70;
hmsc->bot_data[7] = REQUEST_SENSE_DATA_LEN - 6;
if((hmsc->scsi_sense_head != hmsc->scsi_sense_tail)) {
hmsc->bot_data[2] = hmsc->scsi_sense[hmsc->scsi_sense_head].Skey;
hmsc->bot_data[12] = hmsc->scsi_sense[hmsc->scsi_sense_head].w.b.ASCQ;
hmsc->bot_data[13] = hmsc->scsi_sense[hmsc->scsi_sense_head].w.b.ASC;
hmsc->scsi_sense_head++;
if (hmsc->scsi_sense_head == SENSE_LIST_DEEPTH)
{
hmsc->scsi_sense_head = 0;
}
}
hmsc->bot_data_length = REQUEST_SENSE_DATA_LEN;
if (params[4] <= REQUEST_SENSE_DATA_LEN)
{
hmsc->bot_data_length = params[4];
}
return 0;
uint8_t i;
DownstreamPacketTypeDef* freePacket;
freePacket = Downstream_GetFreePacketImmediately();
SCSI_ProcessCmd_hmsc->bot_packet = freePacket;
SCSI_ProcessCmd_hmsc->bot_data = freePacket->Data;
for (i=0 ; i < REQUEST_SENSE_DATA_LEN ; i++)
{
SCSI_ProcessCmd_hmsc->bot_data[i] = 0;
}
SCSI_ProcessCmd_hmsc->bot_data[0] = 0x70;
SCSI_ProcessCmd_hmsc->bot_data[7] = REQUEST_SENSE_DATA_LEN - 6;
if((SCSI_ProcessCmd_hmsc->scsi_sense_head != SCSI_ProcessCmd_hmsc->scsi_sense_tail))
{
SCSI_ProcessCmd_hmsc->bot_data[2] = SCSI_ProcessCmd_hmsc->scsi_sense[SCSI_ProcessCmd_hmsc->scsi_sense_head].Skey;
SCSI_ProcessCmd_hmsc->bot_data[12] = SCSI_ProcessCmd_hmsc->scsi_sense[SCSI_ProcessCmd_hmsc->scsi_sense_head].w.b.ASCQ;
SCSI_ProcessCmd_hmsc->bot_data[13] = SCSI_ProcessCmd_hmsc->scsi_sense[SCSI_ProcessCmd_hmsc->scsi_sense_head].w.b.ASC;
SCSI_ProcessCmd_hmsc->scsi_sense_head++;
if (SCSI_ProcessCmd_hmsc->scsi_sense_head == SENSE_LIST_DEPTH)
{
SCSI_ProcessCmd_hmsc->scsi_sense_head = 0;
}
}
SCSI_ProcessCmd_hmsc->bot_data_length = REQUEST_SENSE_DATA_LEN;
if (SCSI_ProcessCmd_params[4] <= REQUEST_SENSE_DATA_LEN)
{
SCSI_ProcessCmd_hmsc->bot_data_length = SCSI_ProcessCmd_params[4];
}
SCSI_ProcessCmd_callback(0);
}
/**
@ -426,7 +518,7 @@ void SCSI_SenseCode(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t sKey, uint8_
hmsc->scsi_sense[hmsc->scsi_sense_tail].Skey = sKey;
hmsc->scsi_sense[hmsc->scsi_sense_tail].w.ASC = ASC << 8;
hmsc->scsi_sense_tail++;
if (hmsc->scsi_sense_tail == SENSE_LIST_DEEPTH)
if (hmsc->scsi_sense_tail == SENSE_LIST_DEPTH)
{
hmsc->scsi_sense_tail = 0;
}
@ -438,11 +530,10 @@ void SCSI_SenseCode(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t sKey, uint8_
* @param params: Command parameters
* @retval status
*/
static int8_t SCSI_StartStopUnit(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t *params)
static void SCSI_StartStopUnit(void)
{
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*) pdev->pClassData;
hmsc->bot_data_length = 0;
return 0;
SCSI_ProcessCmd_hmsc->bot_data_length = 0;
SCSI_ProcessCmd_callback(0);
}
/**
@ -452,67 +543,121 @@ static int8_t SCSI_StartStopUnit(USBD_HandleTypeDef *pdev, uint8_t lun, uint8_t
* @param params: Command parameters
* @retval status
*/
static int8_t SCSI_Read10(USBD_HandleTypeDef *pdev, uint8_t lun , uint8_t *params)
static void SCSI_Read10(void)
{
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*) pdev->pClassData;
if (SCSI_ProcessCmd_hmsc->bot_state == USBD_BOT_IDLE) /* Idle */
{
/* case 10 : Ho <> Di */
if ((SCSI_ProcessCmd_hmsc->cbw.bmFlags & 0x80) != 0x80)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_hmsc->cbw.bLUN,
ILLEGAL_REQUEST,
INVALID_CDB);
SCSI_ProcessCmd_callback(-1);
return;
}
SCSI_ProcessCmd_hmsc->scsi_blk_addr = (SCSI_ProcessCmd_params[2] << 24) | \
(SCSI_ProcessCmd_params[3] << 16) | \
(SCSI_ProcessCmd_params[4] << 8) | \
SCSI_ProcessCmd_params[5];
SCSI_ProcessCmd_hmsc->scsi_blk_len = (SCSI_ProcessCmd_params[7] << 8) | \
SCSI_ProcessCmd_params[8];
if (SCSI_CheckAddressRange(SCSI_ProcessCmd_hmsc->scsi_blk_addr,
SCSI_ProcessCmd_hmsc->scsi_blk_len) < 0)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_hmsc->cbw.bLUN,
ILLEGAL_REQUEST,
INVALID_CDB);
SCSI_ProcessCmd_callback(-1); /* error */
return;
}
/* cases 4,5 : Hi <> Dn */
if (SCSI_ProcessCmd_hmsc->cbw.dDataLength != (uint32_t)(SCSI_ProcessCmd_hmsc->scsi_blk_len * SCSI_ProcessCmd_hmsc->scsi_blk_size))
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_hmsc->cbw.bLUN,
ILLEGAL_REQUEST,
INVALID_CDB);
SCSI_ProcessCmd_callback(-1);
return;
}
if (DownstreamInterface_BeginRead(SCSI_Read10BeginCallback,
SCSI_ProcessCmd_hmsc->scsi_blk_addr,
SCSI_ProcessCmd_hmsc->scsi_blk_len,
SCSI_ProcessCmd_hmsc->cbw.dDataLength) != HAL_OK)
{
SCSI_Read10BeginCallback(HAL_ERROR);
}
return;
}
//hmsc->bot_state is already USBD_BOT_DATA_IN
DownstreamInterface_GetStreamDataPacket(SCSI_Read10ReplyCallback);
}
if(hmsc->bot_state == USBD_BOT_IDLE) /* Idle */
{
/* case 10 : Ho <> Di */
if ((hmsc->cbw.bmFlags & 0x80) != 0x80)
{
SCSI_SenseCode(pdev,
hmsc->cbw.bLUN,
ILLEGAL_REQUEST,
INVALID_CDB);
return -1;
}
if(((USBD_StorageTypeDef *)pdev->pUserData)->IsReady(lun) !=0 )
{
SCSI_SenseCode(pdev,
lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
return -1;
}
hmsc->scsi_blk_addr = (params[2] << 24) | \
(params[3] << 16) | \
(params[4] << 8) | \
params[5];
hmsc->scsi_blk_len = (params[7] << 8) | \
params[8];
if( SCSI_CheckAddressRange(pdev, lun, hmsc->scsi_blk_addr, hmsc->scsi_blk_len) < 0)
{
return -1; /* error */
}
hmsc->bot_state = USBD_BOT_DATA_IN;
hmsc->scsi_blk_addr *= hmsc->scsi_blk_size;
hmsc->scsi_blk_len *= hmsc->scsi_blk_size;
/* cases 4,5 : Hi <> Dn */
if (hmsc->cbw.dDataLength != hmsc->scsi_blk_len)
{
SCSI_SenseCode(pdev,
hmsc->cbw.bLUN,
ILLEGAL_REQUEST,
INVALID_CDB);
return -1;
}
}
hmsc->bot_data_length = MSC_MEDIA_PACKET;
void SCSI_Read10BeginCallback(HAL_StatusTypeDef result)
{
if (result != HAL_OK)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
SCSI_ProcessCmd_callback(-1);
return;
}
SCSI_ProcessCmd_hmsc->bot_state = USBD_BOT_DATA_IN;
if (DownstreamInterface_GetStreamDataPacket(SCSI_Read10ReplyCallback) != HAL_OK)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
SCSI_ProcessCmd_callback(-1);
}
}
return SCSI_ProcessRead(pdev, lun);
void SCSI_Read10ReplyCallback(HAL_StatusTypeDef result,
DownstreamPacketTypeDef* downstreamPacket)
{
if (result != HAL_OK)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
HARDWARE_ERROR,
UNRECOVERED_READ_ERROR);
SCSI_ProcessCmd_callback(-1);
return;
}
SCSI_ProcessCmd_hmsc->bot_packet = downstreamPacket;
SCSI_ProcessCmd_hmsc->bot_data = downstreamPacket->Data;
USBD_LL_Transmit (SCSI_ProcessCmd_pdev,
MSC_EPIN_ADDR,
SCSI_ProcessCmd_hmsc->bot_data,
downstreamPacket->Length);
/* case 6 : Hi = Di */
SCSI_ProcessCmd_hmsc->csw.dDataResidue -= downstreamPacket->Length;
if (SCSI_ProcessCmd_hmsc->csw.dDataResidue == 0)
{
SCSI_ProcessCmd_hmsc->bot_state = USBD_BOT_LAST_DATA_IN;
}
SCSI_ProcessCmd_callback(0);
}
/**
* @brief SCSI_Write10
* Process Write10 command
@ -521,86 +666,139 @@ static int8_t SCSI_Read10(USBD_HandleTypeDef *pdev, uint8_t lun , uint8_t *para
* @retval status
*/
static int8_t SCSI_Write10 (USBD_HandleTypeDef *pdev, uint8_t lun , uint8_t *params)
static void SCSI_Write10(void)
{
uint32_t dataLength;
if (SCSI_ProcessCmd_hmsc->bot_state == USBD_BOT_IDLE) /* Idle */
{
/* case 8 : Hi <> Do */
if ((SCSI_ProcessCmd_hmsc->cbw.bmFlags & 0x80) == 0x80)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_hmsc->cbw.bLUN,
ILLEGAL_REQUEST,
INVALID_CDB);
SCSI_ProcessCmd_callback(-1);
return;
}
SCSI_ProcessCmd_hmsc->scsi_blk_addr = (SCSI_ProcessCmd_params[2] << 24) | \
(SCSI_ProcessCmd_params[3] << 16) | \
(SCSI_ProcessCmd_params[4] << 8) | \
SCSI_ProcessCmd_params[5];
SCSI_ProcessCmd_hmsc->scsi_blk_len = (SCSI_ProcessCmd_params[7] << 8) | \
SCSI_ProcessCmd_params[8];
if (SCSI_CheckAddressRange(SCSI_ProcessCmd_hmsc->scsi_blk_addr,
SCSI_ProcessCmd_hmsc->scsi_blk_len) < 0)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_hmsc->cbw.bLUN,
ILLEGAL_REQUEST,
INVALID_CDB);
SCSI_ProcessCmd_callback(-1); /* error */
return;
}
/* cases 3,11,13 : Hn,Ho <> D0 */
if (SCSI_ProcessCmd_hmsc->cbw.dDataLength != (uint32_t)(SCSI_ProcessCmd_hmsc->scsi_blk_len * SCSI_ProcessCmd_hmsc->scsi_blk_size))
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_hmsc->cbw.bLUN,
ILLEGAL_REQUEST,
INVALID_CDB);
SCSI_ProcessCmd_callback(-1);
return;
}
if (DownstreamInterface_BeginWrite(SCSI_Write10BeginCallback,
SCSI_ProcessCmd_hmsc->scsi_blk_addr,
SCSI_ProcessCmd_hmsc->scsi_blk_len) != HAL_OK)
{
SCSI_Write10BeginCallback(HAL_ERROR);
}
return;
}
//hmsc->bot_state is already USBD_BOT_DATA_OUT
dataLength = MIN(SCSI_ProcessCmd_hmsc->csw.dDataResidue, MSC_MEDIA_PACKET);
if (DownstreamInterface_PutStreamDataPacket(SCSI_ProcessCmd_hmsc->bot_packet,
dataLength) != HAL_OK)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
HARDWARE_ERROR,
WRITE_FAULT);
SCSI_ProcessCmd_callback(-1);
return;
}
SCSI_ProcessCmd_hmsc->csw.dDataResidue -= dataLength;
if (SCSI_ProcessCmd_hmsc->csw.dDataResidue == 0)
{
MSC_BOT_SendCSW (SCSI_ProcessCmd_pdev, USBD_CSW_CMD_PASSED);
SCSI_ProcessCmd_callback(0);
return;
}
/* Prepare EP to Receive next packet */
if (Downstream_GetFreePacket(SCSI_Write10FreePacketCallback) != HAL_OK)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
SCSI_ProcessCmd_callback(-1);
}
}
void SCSI_Write10BeginCallback(HAL_StatusTypeDef result)
{
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*) pdev->pClassData;
if (result == HAL_BUSY)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
NOT_READY,
WRITE_PROTECTED);
SCSI_ProcessCmd_callback(-1);
return;
}
if (result != HAL_OK)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
SCSI_ProcessCmd_callback(-1);
return;
}
/* Prepare EP to receive first data packet */
SCSI_ProcessCmd_hmsc->bot_state = USBD_BOT_DATA_OUT;
if (Downstream_GetFreePacket(SCSI_Write10FreePacketCallback) != HAL_OK)
{
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
SCSI_ProcessCmd_callback(-1);
}
}
if (hmsc->bot_state == USBD_BOT_IDLE) /* Idle */
{
/* case 8 : Hi <> Do */
if ((hmsc->cbw.bmFlags & 0x80) == 0x80)
{
SCSI_SenseCode(pdev,
hmsc->cbw.bLUN,
ILLEGAL_REQUEST,
INVALID_CDB);
return -1;
}
/* Check whether Media is ready */
if(((USBD_StorageTypeDef *)pdev->pUserData)->IsReady(lun) !=0 )
{
SCSI_SenseCode(pdev,
lun,
NOT_READY,
MEDIUM_NOT_PRESENT);
return -1;
}
/* Check If media is write-protected */
if(((USBD_StorageTypeDef *)pdev->pUserData)->IsWriteProtected(lun) !=0 )
{
SCSI_SenseCode(pdev,
lun,
NOT_READY,
WRITE_PROTECTED);
return -1;
}
hmsc->scsi_blk_addr = (params[2] << 24) | \
(params[3] << 16) | \
(params[4] << 8) | \
params[5];
hmsc->scsi_blk_len = (params[7] << 8) | \
params[8];
/* check if LBA address is in the right range */
if(SCSI_CheckAddressRange(pdev,
lun,
hmsc->scsi_blk_addr,
hmsc->scsi_blk_len) < 0)
{
return -1; /* error */
}
hmsc->scsi_blk_addr *= hmsc->scsi_blk_size;
hmsc->scsi_blk_len *= hmsc->scsi_blk_size;
/* cases 3,11,13 : Hn,Ho <> D0 */
if (hmsc->cbw.dDataLength != hmsc->scsi_blk_len)
{
SCSI_SenseCode(pdev,
hmsc->cbw.bLUN,
ILLEGAL_REQUEST,
INVALID_CDB);
return -1;
}
/* Prepare EP to receive first data packet */
hmsc->bot_state = USBD_BOT_DATA_OUT;
USBD_LL_PrepareReceive (pdev,
MSC_EPOUT_ADDR,
hmsc->bot_data,
MIN (hmsc->scsi_blk_len, MSC_MEDIA_PACKET));
}
else /* Write Process ongoing */
{
return SCSI_ProcessWrite(pdev, lun);
}
return 0;
void SCSI_Write10FreePacketCallback(DownstreamPacketTypeDef* freePacket)
{
SCSI_ProcessCmd_hmsc->bot_packet = freePacket;
SCSI_ProcessCmd_hmsc->bot_data = freePacket->Data;
USBD_LL_PrepareReceive (SCSI_ProcessCmd_pdev,
MSC_EPOUT_ADDR,
SCSI_ProcessCmd_hmsc->bot_data,
MIN(SCSI_ProcessCmd_hmsc->csw.dDataResidue, MSC_MEDIA_PACKET));
SCSI_ProcessCmd_callback(0); //Report eventual success!
}
@ -612,28 +810,26 @@ static int8_t SCSI_Write10 (USBD_HandleTypeDef *pdev, uint8_t lun , uint8_t *pa
* @retval status
*/
static int8_t SCSI_Verify10(USBD_HandleTypeDef *pdev, uint8_t lun , uint8_t *params)
static void SCSI_Verify10(void)
{
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*) pdev->pClassData;
if ((params[1]& 0x02) == 0x02)
if ((SCSI_ProcessCmd_params[1]& 0x02) == 0x02)
{
SCSI_SenseCode (pdev,
lun,
SCSI_SenseCode (SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
ILLEGAL_REQUEST,
INVALID_FIELED_IN_COMMAND);
return -1; /* Error, Verify Mode Not supported*/
INVALID_FIELD_IN_COMMAND);
SCSI_ProcessCmd_callback(-1); /* Error, Verify Mode Not supported*/
return;
}
if(SCSI_CheckAddressRange(pdev,
lun,
hmsc->scsi_blk_addr,
hmsc->scsi_blk_len) < 0)
if(SCSI_CheckAddressRange(SCSI_ProcessCmd_hmsc->scsi_blk_addr,
SCSI_ProcessCmd_hmsc->scsi_blk_len) < 0)
{
return -1; /* error */
SCSI_ProcessCmd_callback(-1); /* error */
return;
}
hmsc->bot_data_length = 0;
return 0;
SCSI_ProcessCmd_hmsc->bot_data_length = 0;
SCSI_ProcessCmd_callback(0);
}
/**
@ -644,14 +840,12 @@ static int8_t SCSI_Verify10(USBD_HandleTypeDef *pdev, uint8_t lun , uint8_t *pa
* @param blk_nbr: number of block to be processed
* @retval status
*/
static int8_t SCSI_CheckAddressRange (USBD_HandleTypeDef *pdev, uint8_t lun , uint32_t blk_offset , uint16_t blk_nbr)
static int8_t SCSI_CheckAddressRange (uint32_t blk_offset , uint16_t blk_nbr)
{
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*) pdev->pClassData;
if ((blk_offset + blk_nbr) > hmsc->scsi_blk_nbr )
if ((blk_offset + blk_nbr) > SCSI_ProcessCmd_hmsc->scsi_blk_nbr )
{
SCSI_SenseCode(pdev,
lun,
SCSI_SenseCode(SCSI_ProcessCmd_pdev,
SCSI_ProcessCmd_lun,
ILLEGAL_REQUEST,
ADDRESS_OUT_OF_RANGE);
return -1;
@ -659,110 +853,6 @@ static int8_t SCSI_CheckAddressRange (USBD_HandleTypeDef *pdev, uint8_t lun , u
return 0;
}
/**
* @brief SCSI_ProcessRead
* Handle Read Process
* @param lun: Logical unit number
* @retval status
*/
static int8_t SCSI_ProcessRead (USBD_HandleTypeDef *pdev, uint8_t lun)
{
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*)pdev->pClassData;
uint32_t len;
len = MIN(hmsc->scsi_blk_len , MSC_MEDIA_PACKET);
if( ((USBD_StorageTypeDef *)pdev->pUserData)->Read(lun ,
hmsc->bot_data,
hmsc->scsi_blk_addr / hmsc->scsi_blk_size,
len / hmsc->scsi_blk_size) < 0)
{
SCSI_SenseCode(pdev,
lun,
HARDWARE_ERROR,
UNRECOVERED_READ_ERROR);
return -1;
}
USBD_LL_Transmit (pdev,
MSC_EPIN_ADDR,
hmsc->bot_data,
len);
hmsc->scsi_blk_addr += len;
hmsc->scsi_blk_len -= len;
/* case 6 : Hi = Di */
hmsc->csw.dDataResidue -= len;
if (hmsc->scsi_blk_len == 0)
{
hmsc->bot_state = USBD_BOT_LAST_DATA_IN;
}
return 0;
}
/**
* @brief SCSI_ProcessWrite
* Handle Write Process
* @param lun: Logical unit number
* @retval status
*/
static int8_t SCSI_ProcessWrite (USBD_HandleTypeDef *pdev, uint8_t lun)
{
uint32_t len;
USBD_MSC_BOT_HandleTypeDef *hmsc = (USBD_MSC_BOT_HandleTypeDef*) pdev->pClassData;
len = MIN(hmsc->scsi_blk_len , MSC_MEDIA_PACKET);
if(((USBD_StorageTypeDef *)pdev->pUserData)->Write(lun ,
hmsc->bot_data,
hmsc->scsi_blk_addr / hmsc->scsi_blk_size,
len / hmsc->scsi_blk_size) < 0)
{
SCSI_SenseCode(pdev,
lun,
HARDWARE_ERROR,
WRITE_FAULT);
return -1;
}
hmsc->scsi_blk_addr += len;
hmsc->scsi_blk_len -= len;
/* case 12 : Ho = Do */
hmsc->csw.dDataResidue -= len;
if (hmsc->scsi_blk_len == 0)
{
MSC_BOT_SendCSW (pdev, USBD_CSW_CMD_PASSED);
}
else
{
/* Prepare EP to Receive next packet */
USBD_LL_PrepareReceive (pdev,
MSC_EPOUT_ADDR,
hmsc->bot_data,
MIN (hmsc->scsi_blk_len, MSC_MEDIA_PACKET));
}
return 0;
}
/**
* @}
*/
/**
* @}
*/
/**
* @}
*/

@ -34,7 +34,7 @@
#endif
/* Includes ------------------------------------------------------------------*/
#include "usbd_conf.h"
#include <usbd_config.h>
#include "usbd_def.h"
#include "usbd_ioreq.h"
#include "usbd_ctlreq.h"
@ -80,7 +80,7 @@
/** @defgroup USBD_CORE_Exported_Variables
* @{
*/
#define USBD_SOF USBD_LL_SOF
/**
* @}
*/
@ -98,21 +98,24 @@ USBD_StatusTypeDef USBD_RunTestMode (USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_SetClassConfig(USBD_HandleTypeDef *pdev, uint8_t cfgidx);
USBD_StatusTypeDef USBD_ClrClassConfig(USBD_HandleTypeDef *pdev, uint8_t cfgidx);
USBD_StatusTypeDef USBD_LL_SetupStage(USBD_HandleTypeDef *pdev, uint8_t *psetup);
USBD_StatusTypeDef USBD_LL_DataOutStage(USBD_HandleTypeDef *pdev , uint8_t epnum, uint8_t *pdata);
USBD_StatusTypeDef USBD_LL_DataInStage(USBD_HandleTypeDef *pdev , uint8_t epnum, uint8_t *pdata);
USBD_StatusTypeDef USBD_SetupStage(USBD_HandleTypeDef *pdev, uint8_t *psetup);
USBD_StatusTypeDef USBD_DataOutStage(USBD_HandleTypeDef *pdev , uint8_t epnum, uint8_t *pdata);
USBD_StatusTypeDef USBD_DataInStage(USBD_HandleTypeDef *pdev , uint8_t epnum, uint8_t *pdata);
USBD_StatusTypeDef USBD_Reset(USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_SetSpeed(USBD_HandleTypeDef *pdev, USBD_SpeedTypeDef speed);
USBD_StatusTypeDef USBD_Suspend(USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_Resume(USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_SOF(USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_IsoINIncomplete(USBD_HandleTypeDef *pdev, uint8_t epnum);
USBD_StatusTypeDef USBD_IsoOUTIncomplete(USBD_HandleTypeDef *pdev, uint8_t epnum);
USBD_StatusTypeDef USBD_LL_Reset(USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_LL_SetSpeed(USBD_HandleTypeDef *pdev, USBD_SpeedTypeDef speed);
USBD_StatusTypeDef USBD_LL_Suspend(USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_LL_Resume(USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_DevConnected(USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_DevDisconnected(USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_LL_SOF(USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_LL_IsoINIncomplete(USBD_HandleTypeDef *pdev, uint8_t epnum);
USBD_StatusTypeDef USBD_LL_IsoOUTIncomplete(USBD_HandleTypeDef *pdev, uint8_t epnum);
USBD_StatusTypeDef USBD_BufferFreed(USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_LL_DevConnected(USBD_HandleTypeDef *pdev);
USBD_StatusTypeDef USBD_LL_DevDisconnected(USBD_HandleTypeDef *pdev);
/* USBD Low Level Driver */
USBD_StatusTypeDef USBD_LL_Init (USBD_HandleTypeDef *pdev);

@ -34,7 +34,7 @@
#endif
/* Includes ------------------------------------------------------------------*/
#include "usbd_conf.h"
#include <usbd_config.h>
/** @addtogroup STM32_USBD_DEVICE_LIBRARY
* @{
@ -171,6 +171,8 @@ typedef struct _Device_cb
uint8_t (*IsoINIncomplete) (struct _USBD_HandleTypeDef *pdev , uint8_t epnum);
uint8_t (*IsoOUTIncomplete) (struct _USBD_HandleTypeDef *pdev , uint8_t epnum);
uint8_t (*FreeDataBuffer) (struct _USBD_HandleTypeDef *pdev);
uint8_t *(*GetHSConfigDescriptor)(uint16_t *length);
uint8_t *(*GetFSConfigDescriptor)(uint16_t *length);
uint8_t *(*GetOtherSpeedConfigDescriptor)(uint16_t *length);

@ -260,7 +260,7 @@ USBD_StatusTypeDef USBD_ClrClassConfig(USBD_HandleTypeDef *pdev, uint8_t cfgidx
* @param pdev: device instance
* @retval status
*/
USBD_StatusTypeDef USBD_LL_SetupStage(USBD_HandleTypeDef *pdev, uint8_t *psetup)
USBD_StatusTypeDef USBD_SetupStage(USBD_HandleTypeDef *pdev, uint8_t *psetup)
{
USBD_ParseSetupRequest(&pdev->request, psetup);
@ -296,7 +296,7 @@ USBD_StatusTypeDef USBD_LL_SetupStage(USBD_HandleTypeDef *pdev, uint8_t *psetup)
* @param epnum: endpoint index
* @retval status
*/
USBD_StatusTypeDef USBD_LL_DataOutStage(USBD_HandleTypeDef *pdev , uint8_t epnum, uint8_t *pdata)
USBD_StatusTypeDef USBD_DataOutStage(USBD_HandleTypeDef *pdev , uint8_t epnum, uint8_t *pdata)
{
USBD_EndpointTypeDef *pep;
@ -340,7 +340,7 @@ USBD_StatusTypeDef USBD_LL_DataOutStage(USBD_HandleTypeDef *pdev , uint8_t epnum
* @param epnum: endpoint index
* @retval status
*/
USBD_StatusTypeDef USBD_LL_DataInStage(USBD_HandleTypeDef *pdev ,uint8_t epnum, uint8_t *pdata)
USBD_StatusTypeDef USBD_DataInStage(USBD_HandleTypeDef *pdev ,uint8_t epnum, uint8_t *pdata)
{
USBD_EndpointTypeDef *pep;
@ -394,13 +394,13 @@ USBD_StatusTypeDef USBD_LL_DataInStage(USBD_HandleTypeDef *pdev ,uint8_t epnum,
}
/**
* @brief USBD_LL_Reset
* @brief USBD_Reset
* Handle Reset event
* @param pdev: device instance
* @retval status
*/
USBD_StatusTypeDef USBD_LL_Reset(USBD_HandleTypeDef *pdev)
USBD_StatusTypeDef USBD_Reset(USBD_HandleTypeDef *pdev)
{
/* Open EP0 OUT */
USBD_LL_OpenEP(pdev,
@ -431,12 +431,12 @@ USBD_StatusTypeDef USBD_LL_Reset(USBD_HandleTypeDef *pdev)
/**
* @brief USBD_LL_Reset
* @brief USBD_SetSpeed
* Handle Reset event
* @param pdev: device instance
* @retval status
*/
USBD_StatusTypeDef USBD_LL_SetSpeed(USBD_HandleTypeDef *pdev, USBD_SpeedTypeDef speed)
USBD_StatusTypeDef USBD_SetSpeed(USBD_HandleTypeDef *pdev, USBD_SpeedTypeDef speed)
{
pdev->dev_speed = speed;
return USBD_OK;
@ -449,7 +449,7 @@ USBD_StatusTypeDef USBD_LL_SetSpeed(USBD_HandleTypeDef *pdev, USBD_SpeedTypeDef
* @retval status
*/
USBD_StatusTypeDef USBD_LL_Suspend(USBD_HandleTypeDef *pdev)
USBD_StatusTypeDef USBD_Suspend(USBD_HandleTypeDef *pdev)
{
pdev->dev_old_state = pdev->dev_state;
pdev->dev_state = USBD_STATE_SUSPENDED;
@ -463,7 +463,7 @@ USBD_StatusTypeDef USBD_LL_Suspend(USBD_HandleTypeDef *pdev)
* @retval status
*/
USBD_StatusTypeDef USBD_LL_Resume(USBD_HandleTypeDef *pdev)
USBD_StatusTypeDef USBD_Resume(USBD_HandleTypeDef *pdev)
{
pdev->dev_state = pdev->dev_old_state;
return USBD_OK;
@ -476,7 +476,7 @@ USBD_StatusTypeDef USBD_LL_Resume(USBD_HandleTypeDef *pdev)
* @retval status
*/
USBD_StatusTypeDef USBD_LL_SOF(USBD_HandleTypeDef *pdev)
USBD_StatusTypeDef USBD_SOF(USBD_HandleTypeDef *pdev)
{
if(pdev->dev_state == USBD_STATE_CONFIGURED)
{
@ -494,7 +494,7 @@ USBD_StatusTypeDef USBD_LL_SOF(USBD_HandleTypeDef *pdev)
* @param pdev: device instance
* @retval status
*/
USBD_StatusTypeDef USBD_LL_IsoINIncomplete(USBD_HandleTypeDef *pdev, uint8_t epnum)
USBD_StatusTypeDef USBD_IsoINIncomplete(USBD_HandleTypeDef *pdev, uint8_t epnum)
{
return USBD_OK;
}
@ -505,7 +505,7 @@ USBD_StatusTypeDef USBD_LL_IsoINIncomplete(USBD_HandleTypeDef *pdev, uint8_t ep
* @param pdev: device instance
* @retval status
*/
USBD_StatusTypeDef USBD_LL_IsoOUTIncomplete(USBD_HandleTypeDef *pdev, uint8_t epnum)
USBD_StatusTypeDef USBD_IsoOUTIncomplete(USBD_HandleTypeDef *pdev, uint8_t epnum)
{
return USBD_OK;
}
@ -516,7 +516,7 @@ USBD_StatusTypeDef USBD_LL_IsoOUTIncomplete(USBD_HandleTypeDef *pdev, uint8_t e
* @param pdev: device instance
* @retval status
*/
USBD_StatusTypeDef USBD_LL_DevConnected(USBD_HandleTypeDef *pdev)
USBD_StatusTypeDef USBD_DevConnected(USBD_HandleTypeDef *pdev)
{
return USBD_OK;
}
@ -527,7 +527,7 @@ USBD_StatusTypeDef USBD_LL_DevConnected(USBD_HandleTypeDef *pdev)
* @param pdev: device instance
* @retval status
*/
USBD_StatusTypeDef USBD_LL_DevDisconnected(USBD_HandleTypeDef *pdev)
USBD_StatusTypeDef USBD_DevDisconnected(USBD_HandleTypeDef *pdev)
{
/* Free Class Resources */
pdev->dev_state = USBD_STATE_DEFAULT;
@ -535,6 +535,12 @@ USBD_StatusTypeDef USBD_LL_DevDisconnected(USBD_HandleTypeDef *pdev)
return USBD_OK;
}
USBD_StatusTypeDef USBD_BufferFreed(USBD_HandleTypeDef *pdev)
{
pdev->pClass->FreeDataBuffer(pdev);
return USBD_OK;
}
/**
* @}
*/

@ -0,0 +1,228 @@
/*
* downstream_interface_msc.c
*
* Created on: 4/07/2015
* Author: Robert Fisk
*/
#include "stm32f4xx_hal.h"
#include "downstream_interface_msc.h"
#include "downstream_interface_def.h"
#include "downstream_spi.h"
//Stuff we need to save for our callbacks to use:
DownstreamInterfaceMSCCallbackTypeDef TestReadyCallback;
DownstreamInterfaceMSCCallbackUintPacketTypeDef GetCapacityCallback;
DownstreamInterfaceMSCCallbackPacketTypeDef GetStreamDataCallback;
uint64_t BlockStart;
uint32_t BlockCount;
uint32_t ByteCount;
DownstreamPacketTypeDef* ReadStreamPacket;
static void DownstreamInterface_TestReadyReplyCallback(DownstreamPacketTypeDef* replyPacket);
static void DownstreamInterface_GetCapacityReplyCallback(DownstreamPacketTypeDef* replyPacket);
static void DownstreamInterface_GetStreamDataPacketCallback(DownstreamPacketTypeDef* replyPacket);
static void DownstreamInterface_BeginWriteReplyCallback(DownstreamPacketTypeDef* replyPacket);
HAL_StatusTypeDef DownstreamInterface_TestReady(DownstreamInterfaceMSCCallbackTypeDef callback)
{
DownstreamPacketTypeDef* freePacket;
HAL_StatusTypeDef tempResult;
TestReadyCallback = callback;
freePacket = Downstream_GetFreePacketImmediately();
freePacket->Length = DOWNSTREAM_PACKET_HEADER_LEN;
freePacket->CommandClass = COMMAND_CLASS_MASS_STORAGE;
freePacket->Command = COMMAND_MSC_TEST_UNIT_READY;
tempResult = Downstream_SendPacket(freePacket);
if (tempResult != HAL_OK)
{
return tempResult;
}
return Downstream_GetPacket(DownstreamInterface_TestReadyReplyCallback);
}
void DownstreamInterface_TestReadyReplyCallback(DownstreamPacketTypeDef* replyPacket)
{
if ((replyPacket->Length != (DOWNSTREAM_PACKET_HEADER_LEN + 1)) ||
(replyPacket->CommandClass & COMMAND_CLASS_DATA_FLAG) ||
(replyPacket->Data[0] != HAL_OK))
{
Downstream_ReleasePacket(replyPacket);
TestReadyCallback(HAL_ERROR);
}
else
{
Downstream_ReleasePacket(replyPacket);
TestReadyCallback(HAL_OK);
}
}
HAL_StatusTypeDef DownstreamInterface_GetCapacity(DownstreamInterfaceMSCCallbackUintPacketTypeDef callback)
{
DownstreamPacketTypeDef* freePacket;
HAL_StatusTypeDef tempResult;
GetCapacityCallback = callback;
freePacket = Downstream_GetFreePacketImmediately();
freePacket->Length = DOWNSTREAM_PACKET_HEADER_LEN;
freePacket->CommandClass = COMMAND_CLASS_MASS_STORAGE;
freePacket->Command = COMMAND_MSC_GET_CAPACITY;
tempResult = Downstream_SendPacket(freePacket);
if (tempResult != HAL_OK)
{
return tempResult;
}
return Downstream_GetPacket(DownstreamInterface_GetCapacityReplyCallback);
}
void DownstreamInterface_GetCapacityReplyCallback(DownstreamPacketTypeDef* replyPacket)
{
uint32_t uint[2];
if ((replyPacket->Length != (DOWNSTREAM_PACKET_HEADER_LEN + 8) ||
(replyPacket->CommandClass & COMMAND_CLASS_DATA_FLAG)))
{
GetCapacityCallback(HAL_ERROR, NULL, NULL);
}
uint[0] = (uint32_t)(replyPacket->Data[0]);
uint[1] = (uint32_t)(replyPacket->Data[1]);
GetCapacityCallback(HAL_OK, uint, replyPacket); //usb_msc_scsi will use this packet, so don't release now
}
HAL_StatusTypeDef DownstreamInterface_BeginRead(DownstreamInterfaceMSCCallbackTypeDef callback,
uint64_t readBlockStart,
uint32_t readBlockCount,
uint32_t readByteCount)
{
DownstreamPacketTypeDef* freePacket;
HAL_StatusTypeDef tempResult;
uint64_t* workDammit;
uint32_t* prettyPlease;
ReadStreamPacket = NULL; //Prepare for GetStreamDataPacket's use
TestReadyCallback = callback;
BlockStart = readBlockStart;
BlockCount = readBlockCount;
ByteCount = readByteCount;
freePacket = Downstream_GetFreePacketImmediately();
freePacket->Length = DOWNSTREAM_PACKET_HEADER_LEN + (4 * 3);
freePacket->CommandClass = COMMAND_CLASS_MASS_STORAGE;
freePacket->Command = COMMAND_MSC_BEGIN_READ;
workDammit = (uint64_t*)&(freePacket->Data[0]);
*workDammit = BlockStart;
prettyPlease = (uint32_t*)&(freePacket->Data[8]);
*prettyPlease = BlockCount;
tempResult = Downstream_SendPacket(freePacket);
if (tempResult != HAL_OK)
{
TestReadyCallback(tempResult);
}
return Downstream_GetPacket(DownstreamInterface_TestReadyReplyCallback); //Re-use TestReadyReplyCallback because it does exactly what we want!
}
HAL_StatusTypeDef DownstreamInterface_GetStreamDataPacket(DownstreamInterfaceMSCCallbackPacketTypeDef callback)
{
GetStreamDataCallback = callback;
//We have a callback address. Do we have a stored packet?
if (ReadStreamPacket)
{
DownstreamInterface_GetStreamDataPacketCallback(ReadStreamPacket); //Send it now!
ReadStreamPacket = NULL;
GetStreamDataCallback = NULL; //We have used up our callback, so mark it empty.
}
return Downstream_GetPacket(DownstreamInterface_GetStreamDataPacketCallback);
}
void DownstreamInterface_GetStreamDataPacketCallback(DownstreamPacketTypeDef* replyPacket)
{
if (GetStreamDataCallback == NULL)
{
ReadStreamPacket = replyPacket; //We used up our callback already, so save this one for later.
return;
}
if (((replyPacket->CommandClass & COMMAND_CLASS_DATA_FLAG) == 0) || //Any 'command' reply (as opposed to 'data' reply) is an automatic fail here
(replyPacket->Length <= DOWNSTREAM_PACKET_HEADER_LEN) || //Should be at least one data byte in the reply.
(replyPacket->Length > ByteCount))
{
GetStreamDataCallback(HAL_ERROR, NULL);
}
else
{
ByteCount -= replyPacket->Length;
GetStreamDataCallback(HAL_OK, replyPacket); //usb_msc_scsi will use this packet, so don't release now
}
}
HAL_StatusTypeDef DownstreamInterface_BeginWrite(DownstreamInterfaceMSCCallbackTypeDef callback,
uint64_t readBlockStart,
uint32_t readBlockCount)
{
DownstreamPacketTypeDef* freePacket;
HAL_StatusTypeDef tempResult;
uint64_t* workDammit;
uint32_t* prettyPlease;
TestReadyCallback = callback;
BlockStart = readBlockStart;
BlockCount = readBlockCount;
freePacket = Downstream_GetFreePacketImmediately();
freePacket->Length = DOWNSTREAM_PACKET_HEADER_LEN + (4 * 3);
freePacket->CommandClass = COMMAND_CLASS_MASS_STORAGE;
freePacket->Command = COMMAND_MSC_BEGIN_WRITE;
workDammit = (uint64_t*)&(freePacket->Data[0]);
*workDammit = BlockStart;
prettyPlease = (uint32_t*)&(freePacket->Data[8]);
*prettyPlease = BlockCount;
tempResult = Downstream_SendPacket(freePacket);
if (tempResult != HAL_OK)
{
TestReadyCallback(tempResult);
}
return Downstream_GetPacket(DownstreamInterface_BeginWriteReplyCallback);
}
void DownstreamInterface_BeginWriteReplyCallback(DownstreamPacketTypeDef* replyPacket)
{
if ((replyPacket->Length != (DOWNSTREAM_PACKET_HEADER_LEN + 1)) ||
(replyPacket->CommandClass & COMMAND_CLASS_DATA_FLAG) ||
((replyPacket->Data[0] != HAL_OK) && (replyPacket->Data[0] != HAL_BUSY)))
{
Downstream_ReleasePacket(replyPacket);
TestReadyCallback(HAL_ERROR);
}
else
{
Downstream_ReleasePacket(replyPacket);
TestReadyCallback(replyPacket->Data[0]);
}
}
HAL_StatusTypeDef DownstreamInterface_PutStreamDataPacket(DownstreamPacketTypeDef* packetToSend,
uint32_t dataLength)
{
packetToSend->Length = dataLength + DOWNSTREAM_PACKET_HEADER_LEN;
packetToSend->CommandClass = COMMAND_CLASS_MASS_STORAGE | COMMAND_CLASS_DATA_FLAG;
packetToSend->Command = COMMAND_MSC_BEGIN_WRITE;
return Downstream_SendPacket(packetToSend);
}

@ -0,0 +1,429 @@
/*
* downstream_spi.c
*
* Created on: 21/06/2015
* Author: Robert Fisk
*/
#include <downstream_spi.h>
#include "downstream_interface_def.h"
#include "stm32f4xx_hal.h"
#include "usbd_def.h"
#include "board_config.h"
SPI_HandleTypeDef hspi1;
DownstreamPacketTypeDef DownstreamPacket0;
DownstreamPacketTypeDef DownstreamPacket1;
DownstreamPacketTypeDef* CurrentWorkingPacket;
DownstreamPacketTypeDef* NextTxPacket; //Indicates we have a pending TX packet
InterfaceStateTypeDef DownstreamInterfaceState;
FreePacketCallbackTypeDef PendingFreePacketCallback; //Indicates someone is waiting for a packet buffer to become available
SpiPacketReceivedCallbackTypeDef ReceivePacketCallback; //Indicates someone is waiting for a received packet
uint8_t SentCommandClass;
uint8_t SentCommand;
static void SPI1_Init(void);
static HAL_StatusTypeDef Downstream_CheckBeginPacketReception(void);
static void Downstream_BeginPacketReception(DownstreamPacketTypeDef* freePacket);
void Downstream_InitInterface(void)
{
DownstreamInterfaceState = INTERFACE_STATE_RESET;
SPI1_Init();
DownstreamPacket0.Busy = NOT_BUSY;
DownstreamPacket1.Busy = NOT_BUSY;
NextTxPacket = NULL;
PendingFreePacketCallback = NULL;
ReceivePacketCallback = NULL;
//Todo: check connection to downstream, await client USB insertion
while (!DOWNSTREAM_TX_OK_ACTIVE);
DownstreamInterfaceState = INTERFACE_STATE_IDLE;
}
void SPI1_Init(void)
{
hspi1.Instance = SPI1;
hspi1.State = HAL_SPI_STATE_RESET;
hspi1.Init.Mode = SPI_MODE_MASTER;
hspi1.Init.Direction = SPI_DIRECTION_2LINES;
hspi1.Init.DataSize = SPI_DATASIZE_8BIT;
hspi1.Init.CLKPolarity = SPI_POLARITY_LOW;
hspi1.Init.CLKPhase = SPI_PHASE_1EDGE;
hspi1.Init.NSS = SPI_NSS_SOFT;
hspi1.Init.BaudRatePrescaler = SPI_BAUDRATEPRESCALER_32; //42MHz APB2 / 32 = 1.3Mbaud
hspi1.Init.FirstBit = SPI_FIRSTBIT_MSB;
hspi1.Init.TIMode = SPI_TIMODE_DISABLED;
hspi1.Init.CRCCalculation = SPI_CRCCALCULATION_ENABLED;
hspi1.Init.CRCPolynomial = SPI_CRC_DEFAULTPOLYNOMIAL;
HAL_SPI_Init(&hspi1);
}
//Used by USB interface classes, and by our internal RX code.
HAL_StatusTypeDef Downstream_GetFreePacket(FreePacketCallbackTypeDef callback)
{
//Sanity checks
if ((DownstreamInterfaceState < INTERFACE_STATE_IDLE) ||
(DownstreamInterfaceState > INTERFACE_STATE_RX_PACKET))
{
SPI_INTERFACE_FREAKOUT_HAL_ERROR;
}
//Do we already have a queued callback?
if (PendingFreePacketCallback != NULL)
{
SPI_INTERFACE_FREAKOUT_HAL_ERROR;
}
//Check if there is a free buffer now
if (DownstreamPacket0.Busy == NOT_BUSY)
{
DownstreamPacket0.Busy = BUSY;
callback(&DownstreamPacket0);
return HAL_OK;
}
if (DownstreamPacket1.Busy == NOT_BUSY)
{
DownstreamPacket1.Busy = BUSY;
callback(&DownstreamPacket1);
return HAL_OK;
}
//Otherwise save requested address for when a buffer becomes free in the future
PendingFreePacketCallback = callback;
return HAL_OK;
}
DownstreamPacketTypeDef* Downstream_GetFreePacketImmediately(void)
{
//Sanity checks
if ((DownstreamInterfaceState < INTERFACE_STATE_IDLE) ||
(DownstreamInterfaceState > INTERFACE_STATE_RX_PACKET))
{
SPI_INTERFACE_FREAKOUT_HAL_ERROR;
}
//We are expecting a free buffer now
if (DownstreamPacket0.Busy == NOT_BUSY)
{
DownstreamPacket0.Busy = BUSY;
return &DownstreamPacket0;
}
if (DownstreamPacket1.Busy == NOT_BUSY)
{
DownstreamPacket1.Busy = BUSY;
return &DownstreamPacket1;
}
//Should not happen:
SPI_INTERFACE_FREAKOUT_HAL_ERROR;
}
//Used by USB interface classes, and by our internal RX code.
void Downstream_ReleasePacket(DownstreamPacketTypeDef* packetToRelease)
{
if (PendingFreePacketCallback != NULL)
{
PendingFreePacketCallback(packetToRelease);
PendingFreePacketCallback = NULL;
}
else
{
packetToRelease->Busy = NOT_BUSY;
}
}
//Used by USB interface classes only.
//OK to call when still transmitting another packet.
//Not OK to call when receiving or waiting for downstream reply.
HAL_StatusTypeDef Downstream_SendPacket(DownstreamPacketTypeDef* packetToWrite)
{
//Sanity checks
if ((packetToWrite != &DownstreamPacket0) &&
(packetToWrite != &DownstreamPacket1))
{
SPI_INTERFACE_FREAKOUT_HAL_ERROR;
}
if ((packetToWrite->Busy != BUSY) ||
(packetToWrite->Length < DOWNSTREAM_PACKET_LEN_MIN) ||
(packetToWrite->Length > DOWNSTREAM_PACKET_LEN))
{
SPI_INTERFACE_FREAKOUT_HAL_ERROR;
}
//Cancel any outstanding receive request
ReceivePacketCallback = NULL;
switch (DownstreamInterfaceState)
{
case INTERFACE_STATE_TX_SIZE_WAIT:
case INTERFACE_STATE_TX_SIZE:
case INTERFACE_STATE_TX_PACKET_WAIT:
case INTERFACE_STATE_TX_PACKET:
if (NextTxPacket != NULL)
{
SPI_INTERFACE_FREAKOUT_HAL_ERROR;
}
NextTxPacket = packetToWrite;
break;
case INTERFACE_STATE_RX_SIZE_WAIT:
case INTERFACE_STATE_RX_SIZE:
case INTERFACE_STATE_RX_PACKET_WAIT:
case INTERFACE_STATE_RX_PACKET:
//We can't let the size/packet sequence get out of sync.
SPI_INTERFACE_FREAKOUT_HAL_ERROR;
case INTERFACE_STATE_IDLE:
DownstreamInterfaceState = INTERFACE_STATE_TX_SIZE_WAIT;
CurrentWorkingPacket = packetToWrite;
SentCommandClass = CurrentWorkingPacket->CommandClass;
SentCommand = CurrentWorkingPacket->Command;
if (DOWNSTREAM_TX_OK_ACTIVE)
{
Downstream_TxOkInterrupt(); //Manually trigger edge interrupt processing if the line was already asserted
}
break;
default:
SPI_INTERFACE_FREAKOUT_HAL_ERROR;
}
return HAL_OK;
}
//Called at the end of the SPI TX DMA transfer,
//at DMA2 interrupt priority. Assume *hspi points to our hspi1.
void HAL_SPI_TxCpltCallback(SPI_HandleTypeDef *hspi)
{
SPI1_NSS_DEASSERT;
if ((DownstreamInterfaceState != INTERFACE_STATE_TX_SIZE) &&
(DownstreamInterfaceState != INTERFACE_STATE_TX_PACKET))
{
SPI_INTERFACE_FREAKOUT_VOID;
}
if (DownstreamInterfaceState == INTERFACE_STATE_TX_SIZE)
{
DownstreamInterfaceState = INTERFACE_STATE_TX_PACKET_WAIT;
if (DOWNSTREAM_TX_OK_ACTIVE)
{
Downstream_TxOkInterrupt();
}
return;
}
if (DownstreamInterfaceState == INTERFACE_STATE_TX_PACKET)
{
if ((PendingFreePacketCallback != NULL) && (NextTxPacket == NULL))
{
SPI_INTERFACE_FREAKOUT_VOID;
}
Downstream_ReleasePacket(CurrentWorkingPacket);
if (NextTxPacket != NULL)
{
//NextTxPacket has already passed the checks in SendDownstreamPacket.
//So we just need to pass it to HAL_SPI_Transmit_DMA.
DownstreamInterfaceState = INTERFACE_STATE_TX_SIZE_WAIT;
CurrentWorkingPacket = NextTxPacket;
NextTxPacket = NULL;
if (DOWNSTREAM_TX_OK_ACTIVE)
{
Downstream_TxOkInterrupt();
}
return;
}
DownstreamInterfaceState = INTERFACE_STATE_IDLE;
if (ReceivePacketCallback != NULL)
{
Downstream_CheckBeginPacketReception();
}
}
}
//Used by USB interface classes.
//Ok to call when transmitting, receiving, or waiting for downstream.
HAL_StatusTypeDef Downstream_GetPacket(SpiPacketReceivedCallbackTypeDef callback)
{
if (ReceivePacketCallback != NULL)
{
SPI_INTERFACE_FREAKOUT_HAL_ERROR;
}
ReceivePacketCallback = callback;
return Downstream_CheckBeginPacketReception();
}
//Internal use only.
HAL_StatusTypeDef Downstream_CheckBeginPacketReception(void)
{
if ((DownstreamInterfaceState < INTERFACE_STATE_IDLE) ||
(DownstreamInterfaceState > INTERFACE_STATE_RX_PACKET))
{
SPI_INTERFACE_FREAKOUT_HAL_ERROR;
}
if (DownstreamInterfaceState == INTERFACE_STATE_IDLE)
{
DownstreamInterfaceState = INTERFACE_STATE_RX_SIZE_WAIT;
}
if (DownstreamInterfaceState == INTERFACE_STATE_RX_SIZE_WAIT)
{
if (DOWNSTREAM_TX_OK_ACTIVE)
{
//DownstreamTxOkInterrupt();
Downstream_GetFreePacket(Downstream_BeginPacketReception); //Take a shortcut here :)
}
}
return HAL_OK;
}
//This is called by EXTI3 falling edge interrupt,
//indicating that downstream is ready for next transaction.
void Downstream_TxOkInterrupt(void)
{
switch (DownstreamInterfaceState)
{
case INTERFACE_STATE_TX_SIZE_WAIT:
DownstreamInterfaceState = INTERFACE_STATE_TX_SIZE;
SPI1_NSS_ASSERT;
if (HAL_SPI_Transmit_DMA(&hspi1,
(uint8_t*)&CurrentWorkingPacket->Length,
2) != HAL_OK)
{
SPI_INTERFACE_FREAKOUT_VOID;
}
break;
case INTERFACE_STATE_TX_PACKET_WAIT:
DownstreamInterfaceState = INTERFACE_STATE_TX_PACKET;
SPI1_NSS_ASSERT;
if ((HAL_SPI_Transmit_DMA(&hspi1,
&CurrentWorkingPacket->CommandClass,
CurrentWorkingPacket->Length)) != HAL_OK)
{
SPI_INTERFACE_FREAKOUT_VOID;
}
break;
case INTERFACE_STATE_RX_SIZE_WAIT:
Downstream_GetFreePacket(Downstream_BeginPacketReception);
break;
case INTERFACE_STATE_RX_PACKET_WAIT:
DownstreamInterfaceState = INTERFACE_STATE_RX_PACKET;
SPI1_NSS_ASSERT;
if ((HAL_SPI_Receive_DMA(&hspi1,
&CurrentWorkingPacket->CommandClass,
(CurrentWorkingPacket->Length + 1))) != HAL_OK) //"When the CRC feature is enabled the pData Length must be Size + 1"
{
SPI_INTERFACE_FREAKOUT_VOID;
}
break;
default:
SPI_INTERFACE_FREAKOUT_VOID;
}
}
//Internal use only.
//Called when we want to receive downstream packet, and a packet buffer has become free.
void Downstream_BeginPacketReception(DownstreamPacketTypeDef* freePacket)
{
if (DownstreamInterfaceState != INTERFACE_STATE_RX_SIZE_WAIT)
{
SPI_INTERFACE_FREAKOUT_VOID;
}
DownstreamInterfaceState = INTERFACE_STATE_RX_SIZE;
CurrentWorkingPacket = freePacket;
CurrentWorkingPacket->Length = 0; //Our RX buffer is used by HAL_SPI_Receive_DMA as dummy TX data, we set Length to 0 so downstream will know this is a dummy packet.
SPI1_NSS_ASSERT;
if (HAL_SPI_Receive_DMA(&hspi1,
(uint8_t*)&CurrentWorkingPacket->Length,
(2 + 1)) != HAL_OK) //"When the CRC feature is enabled the pData Length must be Size + 1"
{
SPI_INTERFACE_FREAKOUT_VOID;
}
}
//Called at the end of the SPI TX DMA transfer,
//at DMA2 interrupt priority. Assume *hspi points to our hspi1.
void HAL_SPI_RxCpltCallback(SPI_HandleTypeDef *hspi)
{
SpiPacketReceivedCallbackTypeDef tempPacketCallback;
SPI1_NSS_DEASSERT;
if ((DownstreamInterfaceState != INTERFACE_STATE_RX_SIZE) &&
(DownstreamInterfaceState != INTERFACE_STATE_RX_PACKET))
{
SPI_INTERFACE_FREAKOUT_VOID;
}
if (DownstreamInterfaceState == INTERFACE_STATE_RX_SIZE)
{
if ((CurrentWorkingPacket->Length < DOWNSTREAM_PACKET_LEN_MIN) ||
(CurrentWorkingPacket->Length > DOWNSTREAM_PACKET_LEN))
{
SPI_INTERFACE_FREAKOUT_VOID;
}
DownstreamInterfaceState = INTERFACE_STATE_RX_PACKET_WAIT;
if (DOWNSTREAM_TX_OK_ACTIVE)
{
Downstream_TxOkInterrupt();
}
return;
}
if (DownstreamInterfaceState == INTERFACE_STATE_RX_PACKET)
{
DownstreamInterfaceState = INTERFACE_STATE_IDLE;
if ((SentCommandClass != (CurrentWorkingPacket->CommandClass & COMMAND_CLASS_MASK)) ||
(SentCommand != CurrentWorkingPacket->Command))
{
SPI_INTERFACE_FREAKOUT_VOID;
}
if (ReceivePacketCallback == NULL)
{
SPI_INTERFACE_FREAKOUT_VOID;
}
//USB interface may want to receive another packet immediately,
//so clear ReceivePacketCallback before the call.
//It is the callback's responsibility to release the packet buffer we are passing to it!
tempPacketCallback = ReceivePacketCallback;
ReceivePacketCallback = NULL;
tempPacketCallback(CurrentWorkingPacket);
}
}
//Something bad happened! Possibly CRC error...
void HAL_SPI_ErrorCallback(SPI_HandleTypeDef *hspi)
{
SPI_INTERFACE_FREAKOUT_VOID;
}

@ -35,64 +35,26 @@
/* Includes ------------------------------------------------------------------*/
#include "stm32f4xx_hal.h"
#include "interrupts.h"
#include "board_config.h"
/* USER CODE BEGIN 0 */
/* USER CODE END 0 */
DMA_HandleTypeDef spiTxDmaHandle;
DMA_HandleTypeDef spiRxDmaHandle;
/**
* Initializes the Global MSP.
*/
void HAL_MspInit(void)
{
/* USER CODE BEGIN MspInit 0 */
/* USER CODE END MspInit 0 */
// HAL_NVIC_SetPriorityGrouping(NVIC_PRIORITYGROUP_4);
//
// /* System interrupt init*/
///* SysTick_IRQn interrupt configuration */
HAL_NVIC_SetPriority(SysTick_IRQn, INT_PRIORITY_SYSTICK, 0);
/* USER CODE BEGIN MspInit 1 */
/* USER CODE END MspInit 1 */
}
void HAL_CRC_MspInit(CRC_HandleTypeDef* hcrc)
{
if(hcrc->Instance==CRC)
{
/* USER CODE BEGIN CRC_MspInit 0 */
/* USER CODE END CRC_MspInit 0 */
/* Peripheral clock enable */
__HAL_RCC_CRC_CLK_ENABLE();
/* USER CODE BEGIN CRC_MspInit 1 */
/* USER CODE END CRC_MspInit 1 */
}
}
void HAL_CRC_MspDeInit(CRC_HandleTypeDef* hcrc)
{
if(hcrc->Instance==CRC)
{
/* USER CODE BEGIN CRC_MspDeInit 0 */
/* USER CODE END CRC_MspDeInit 0 */
/* Peripheral clock disable */
__CRC_CLK_DISABLE();
/* USER CODE BEGIN CRC_MspDeInit 1 */
/* USER CODE END CRC_MspDeInit 1 */
}
}
void HAL_SPI_MspInit(SPI_HandleTypeDef* hspi)
{
@ -100,30 +62,69 @@ void HAL_SPI_MspInit(SPI_HandleTypeDef* hspi)
GPIO_InitTypeDef GPIO_InitStruct;
if(hspi->Instance==SPI1)
{
/* USER CODE BEGIN SPI1_MspInit 0 */
/* USER CODE END SPI1_MspInit 0 */
/* Peripheral clock enable */
__HAL_RCC_SPI1_CLK_ENABLE();
__HAL_RCC_DMA2_CLK_ENABLE();
/**SPI1 GPIO Configuration
PA4 ------> SPI1_NSS
PA4 ------> GPIO manual slave select
PA5 ------> SPI1_SCK
PA6 ------> SPI1_MISO
PA7 ------> SPI1_MOSI
*/
GPIO_InitStruct.Pin = GPIO_PIN_4|GPIO_PIN_5|GPIO_PIN_6|GPIO_PIN_7;
GPIO_InitStruct.Pin = GPIO_PIN_5|GPIO_PIN_6|GPIO_PIN_7;
GPIO_InitStruct.Mode = GPIO_MODE_AF_PP;
GPIO_InitStruct.Pull = GPIO_PULLDOWN;
GPIO_InitStruct.Pull = GPIO_NOPULL;
GPIO_InitStruct.Speed = GPIO_SPEED_MEDIUM;
GPIO_InitStruct.Alternate = GPIO_AF5_SPI1;
HAL_GPIO_Init(GPIOA, &GPIO_InitStruct);
/* USER CODE BEGIN SPI1_MspInit 1 */
/* USER CODE END SPI1_MspInit 1 */
GPIO_InitStruct.Pin = SPI1_NSS_PIN;
GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP;
HAL_GPIO_Init(GPIOA, &GPIO_InitStruct);
SPI1_NSS_DEASSERT;
//Prepare Tx DMA stream
hspi->hdmatx = &spiTxDmaHandle;
spiTxDmaHandle.Instance = DMA2_Stream3;
spiTxDmaHandle.Parent = hspi;
spiTxDmaHandle.Init.Channel = DMA_CHANNEL_3;
spiTxDmaHandle.Init.Direction = DMA_MEMORY_TO_PERIPH;
spiTxDmaHandle.Init.PeriphInc = DMA_PINC_DISABLE;
spiTxDmaHandle.Init.MemInc = DMA_MINC_ENABLE;
spiTxDmaHandle.Init.PeriphDataAlignment = DMA_PDATAALIGN_BYTE;
spiTxDmaHandle.Init.MemDataAlignment = DMA_MDATAALIGN_BYTE;
spiTxDmaHandle.Init.Mode = DMA_NORMAL;
spiTxDmaHandle.Init.Priority = DMA_PRIORITY_MEDIUM;
spiTxDmaHandle.Init.FIFOMode = DMA_FIFOMODE_DISABLE;
HAL_DMA_Init(&spiTxDmaHandle);
HAL_NVIC_SetPriority(DMA2_Stream3_IRQn, INT_PRIORITY_SPI_DMA, 0);
HAL_NVIC_EnableIRQ(DMA2_Stream3_IRQn);
//Prepare Rx DMA stream
hspi->hdmarx = &spiRxDmaHandle;
spiRxDmaHandle.Instance = DMA2_Stream2;
spiRxDmaHandle.Parent = hspi;
spiRxDmaHandle.Init.Channel = DMA_CHANNEL_3;
spiRxDmaHandle.Init.Direction = DMA_PERIPH_TO_MEMORY;
spiRxDmaHandle.Init.PeriphInc = DMA_PINC_DISABLE;
spiRxDmaHandle.Init.MemInc = DMA_MINC_ENABLE;
spiRxDmaHandle.Init.PeriphDataAlignment = DMA_PDATAALIGN_BYTE;
spiRxDmaHandle.Init.MemDataAlignment = DMA_MDATAALIGN_BYTE;
spiRxDmaHandle.Init.Mode = DMA_NORMAL;
spiRxDmaHandle.Init.Priority = DMA_PRIORITY_MEDIUM;
spiRxDmaHandle.Init.FIFOMode = DMA_FIFOMODE_DISABLE;
HAL_DMA_Init(&spiRxDmaHandle);
HAL_NVIC_SetPriority(DMA2_Stream2_IRQn, INT_PRIORITY_SPI_DMA, 0);
HAL_NVIC_EnableIRQ(DMA2_Stream2_IRQn);
//Configure downstream request pin and interrupt
GPIO_InitStruct.Pin = DOWNSTREAM_TX_OK_PIN;
GPIO_InitStruct.Mode = GPIO_MODE_INPUT | GPIO_MODE_IT_FALLING;
GPIO_InitStruct.Pull = GPIO_PULLUP;
HAL_GPIO_Init(DOWNSTREAM_TX_OK_PORT, &GPIO_InitStruct);
HAL_NVIC_SetPriority(EXTI3_IRQn, INT_PRIORITY_SPI_DMA, 0);
HAL_NVIC_EnableIRQ(EXTI3_IRQn);
}
}
void HAL_SPI_MspDeInit(SPI_HandleTypeDef* hspi)
@ -131,11 +132,9 @@ void HAL_SPI_MspDeInit(SPI_HandleTypeDef* hspi)
if(hspi->Instance==SPI1)
{
/* USER CODE BEGIN SPI1_MspDeInit 0 */
/* USER CODE END SPI1_MspDeInit 0 */
/* Peripheral clock disable */
__SPI1_CLK_DISABLE();
__HAL_RCC_SPI1_CLK_DISABLE();
__HAL_RCC_DMA2_CLK_DISABLE();
/**SPI1 GPIO Configuration
PA4 ------> SPI1_NSS
@ -144,24 +143,16 @@ void HAL_SPI_MspDeInit(SPI_HandleTypeDef* hspi)
PA7 ------> SPI1_MOSI
*/
HAL_GPIO_DeInit(GPIOA, GPIO_PIN_4|GPIO_PIN_5|GPIO_PIN_6|GPIO_PIN_7);
HAL_DMA_DeInit(&spiTxDmaHandle);
HAL_DMA_DeInit(&spiRxDmaHandle);
/* USER CODE BEGIN SPI1_MspDeInit 1 */
/* USER CODE END SPI1_MspDeInit 1 */
HAL_NVIC_DisableIRQ(DMA2_Stream3_IRQn);
HAL_NVIC_DisableIRQ(DMA2_Stream2_IRQn);
}
}
/* USER CODE BEGIN 1 */
/* USER CODE END 1 */
/**
* @}
*/
/**
* @}
*/
/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/

@ -41,38 +41,50 @@
/* USER CODE END 0 */
/* External variables --------------------------------------------------------*/
extern PCD_HandleTypeDef hpcd_USB_OTG_FS;
extern PCD_HandleTypeDef hpcd_USB_OTG_FS;
extern DMA_HandleTypeDef spiTxDmaHandle;
extern DMA_HandleTypeDef spiRxDmaHandle;
/******************************************************************************/
/* Cortex-M4 Processor Interruption and Exception Handlers */
/******************************************************************************/
/**
* @brief This function handles USB On The Go FS global interrupt.
*/
void SysTick_Handler(void)
{
HAL_IncTick();
}
/////////////////////////
//All interrupts in this section must be at the same priority.
//They interact with each other, and calls are not thread-safe
//when different interrupt priorities are used.
/////////////////////////
void OTG_FS_IRQHandler(void)
{
STAT_LED_PORT->BSRR = STAT_LED_BSRR_ON; //blink STAT LED while processing interrupt
STAT_LED_ON; //blink STAT LED while processing interrupt
HAL_PCD_IRQHandler(&hpcd_USB_OTG_FS);
STAT_LED_PORT->BSRR = STAT_LED_BSRR_OFF;
STAT_LED_OFF;
}
/**
* @brief This function handles System tick timer.
*/
void SysTick_Handler(void)
void DMA2_Stream2_IRQHandler(void)
{
/* USER CODE BEGIN SysTick_IRQn 0 */
HAL_DMA_IRQHandler(&spiRxDmaHandle);
}
/* USER CODE END SysTick_IRQn 0 */
HAL_IncTick();
//HAL_SYSTICK_IRQHandler();
/* USER CODE BEGIN SysTick_IRQn 1 */
void DMA2_Stream3_IRQHandler(void)
{
HAL_DMA_IRQHandler(&spiTxDmaHandle);
}
/* USER CODE END SysTick_IRQn 1 */
void EXTI3_IRQHandler(void)
{
__HAL_GPIO_EXTI_CLEAR_IT(3);
Downstream_TxOkInterrupt();
}
/////////////////////////
/////////////////////////
/* USER CODE BEGIN 1 */
/* USER CODE END 1 */
/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/

@ -33,6 +33,7 @@
*/
/* Includes ------------------------------------------------------------------*/
#include <downstream_spi.h>
#include "stm32f4xx_hal.h"
#include "usb_device.h"
#include "board_config.h"
@ -40,16 +41,13 @@
/* Private variables ---------------------------------------------------------*/
CRC_HandleTypeDef hcrc;
SPI_HandleTypeDef hspi1;
/* Private function prototypes -----------------------------------------------*/
void SystemClock_Config(void);
static void MX_GPIO_Init(void);
static void MX_CRC_Init(void);
static void MX_SPI1_Init(void);
static void GPIO_Init(void);
int main(void)
@ -63,10 +61,12 @@ int main(void)
SystemClock_Config();
/* Initialize all configured peripherals */
MX_GPIO_Init();
MX_CRC_Init();
MX_SPI1_Init();
MX_USB_DEVICE_Init();
GPIO_Init();
USB_Device_Init();
Downstream_InitInterface();
while (1)
{
@ -107,33 +107,6 @@ void SystemClock_Config(void)
}
/* CRC init function */
void MX_CRC_Init(void)
{
hcrc.Instance = CRC;
hcrc.State = HAL_CRC_STATE_RESET;
HAL_CRC_Init(&hcrc);
}
/* SPI1 init function */
void MX_SPI1_Init(void)
{
hspi1.Instance = SPI1;
hspi1.State = HAL_SPI_STATE_RESET;
hspi1.Init.Mode = SPI_MODE_MASTER;
hspi1.Init.Direction = SPI_DIRECTION_2LINES;
hspi1.Init.DataSize = SPI_DATASIZE_8BIT;
hspi1.Init.CLKPolarity = SPI_POLARITY_LOW;
hspi1.Init.CLKPhase = SPI_PHASE_1EDGE;
hspi1.Init.NSS = SPI_NSS_HARD_OUTPUT;
hspi1.Init.BaudRatePrescaler = SPI_BAUDRATEPRESCALER_2;
hspi1.Init.FirstBit = SPI_FIRSTBIT_MSB;
hspi1.Init.TIMode = SPI_TIMODE_DISABLED;
hspi1.Init.CRCCalculation = SPI_CRCCALCULATION_ENABLED;
hspi1.Init.CRCPolynomial = SPI_CRC_DEFAULTPOLYNOMIAL;
HAL_SPI_Init(&hspi1);
}
/** Configure pins as
* Analog
@ -142,7 +115,7 @@ void MX_SPI1_Init(void)
* EVENT_OUT
* EXTI
*/
void MX_GPIO_Init(void)
void GPIO_Init(void)
{
GPIO_InitTypeDef GPIO_InitStruct;
@ -177,7 +150,7 @@ void MX_GPIO_Init(void)
GPIO_InitStruct.Mode = GPIO_MODE_OUTPUT_PP;
GPIO_InitStruct.Pull = GPIO_NOPULL;
HAL_GPIO_Init(STAT_LED_PORT, &GPIO_InitStruct);
STAT_LED_PORT->BSRR = STAT_LED_BSRR_OFF;
STAT_LED_PORT->BSRR = STAT_LED_OFF;
}
/* USER CODE BEGIN 4 */

@ -35,25 +35,22 @@
/* Includes ------------------------------------------------------------------*/
#include <usbd_descriptors.h>
#include "usb_device.h"
#include "usbd_core.h"
#include "usbd_desc.h"
#include "usbd_msc.h"
#include "usbd_storage_if.h"
/* USB Device Core handle declaration */
USBD_HandleTypeDef hUsbDeviceFS;
/* init function */
void MX_USB_DEVICE_Init(void)
void USB_Device_Init(void)
{
/* Init Device Library,Add Supported Class and Start the library*/
USBD_Init(&hUsbDeviceFS, &FS_Desc, DEVICE_FS);
USBD_RegisterClass(&hUsbDeviceFS, &USBD_MSC);
USBD_MSC_RegisterStorage(&hUsbDeviceFS, &USBD_Storage_Interface_fops_FS);
USBD_Start(&hUsbDeviceFS);
}

@ -116,7 +116,7 @@ void HAL_PCD_MspDeInit(PCD_HandleTypeDef* hpcd)
*/
void HAL_PCD_SetupStageCallback(PCD_HandleTypeDef *hpcd)
{
USBD_LL_SetupStage(hpcd->pData, (uint8_t *)hpcd->Setup);
USBD_SetupStage(hpcd->pData, (uint8_t *)hpcd->Setup);
}
/**
@ -127,7 +127,7 @@ void HAL_PCD_SetupStageCallback(PCD_HandleTypeDef *hpcd)
*/
void HAL_PCD_DataOutStageCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum)
{
USBD_LL_DataOutStage(hpcd->pData, epnum, hpcd->OUT_ep[epnum].xfer_buff);
USBD_DataOutStage(hpcd->pData, epnum, hpcd->OUT_ep[epnum].xfer_buff);
}
/**
@ -138,7 +138,7 @@ void HAL_PCD_DataOutStageCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum)
*/
void HAL_PCD_DataInStageCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum)
{
USBD_LL_DataInStage(hpcd->pData, epnum, hpcd->IN_ep[epnum].xfer_buff);
USBD_DataInStage(hpcd->pData, epnum, hpcd->IN_ep[epnum].xfer_buff);
}
/**
@ -148,7 +148,7 @@ void HAL_PCD_DataInStageCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum)
*/
void HAL_PCD_SOFCallback(PCD_HandleTypeDef *hpcd)
{
USBD_LL_SOF(hpcd->pData);
USBD_SOF(hpcd->pData);
}
/**
@ -174,10 +174,10 @@ void HAL_PCD_ResetCallback(PCD_HandleTypeDef *hpcd)
speed = USBD_SPEED_FULL;
break;
}
USBD_LL_SetSpeed(hpcd->pData, speed);
USBD_SetSpeed(hpcd->pData, speed);
/*Reset Device*/
USBD_LL_Reset(hpcd->pData);
USBD_Reset(hpcd->pData);
}
/**
@ -189,7 +189,7 @@ void HAL_PCD_ResetCallback(PCD_HandleTypeDef *hpcd)
void HAL_PCD_SuspendCallback(PCD_HandleTypeDef *hpcd)
{
/* Inform USB library that core enters in suspend Mode */
USBD_LL_Suspend(hpcd->pData);
USBD_Suspend(hpcd->pData);
__HAL_PCD_GATE_PHYCLOCK(hpcd);
/*Enter in STOP mode */
/* USER CODE BEGIN 2 */
@ -217,7 +217,7 @@ void HAL_PCD_ResumeCallback(PCD_HandleTypeDef *hpcd)
}
/* USER CODE END 3 */
__HAL_PCD_UNGATE_PHYCLOCK(hpcd);
USBD_LL_Resume(hpcd->pData);
USBD_Resume(hpcd->pData);
}
/**
@ -228,7 +228,7 @@ void HAL_PCD_ResumeCallback(PCD_HandleTypeDef *hpcd)
*/
void HAL_PCD_ISOOUTIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum)
{
USBD_LL_IsoOUTIncomplete(hpcd->pData, epnum);
USBD_IsoOUTIncomplete(hpcd->pData, epnum);
}
/**
@ -239,7 +239,7 @@ void HAL_PCD_ISOOUTIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum)
*/
void HAL_PCD_ISOINIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum)
{
USBD_LL_IsoINIncomplete(hpcd->pData, epnum);
USBD_IsoINIncomplete(hpcd->pData, epnum);
}
/**
@ -249,7 +249,7 @@ void HAL_PCD_ISOINIncompleteCallback(PCD_HandleTypeDef *hpcd, uint8_t epnum)
*/
void HAL_PCD_ConnectCallback(PCD_HandleTypeDef *hpcd)
{
USBD_LL_DevConnected(hpcd->pData);
USBD_DevConnected(hpcd->pData);
}
/**
@ -259,7 +259,12 @@ void HAL_PCD_ConnectCallback(PCD_HandleTypeDef *hpcd)
*/
void HAL_PCD_DisconnectCallback(PCD_HandleTypeDef *hpcd)
{
USBD_LL_DevDisconnected(hpcd->pData);
USBD_DevDisconnected(hpcd->pData);
}
void HAL_PCD_BufferFreedCallBack(PCD_HandleTypeDef *hpcd)
{
USBD_BufferFreed(hpcd->pData);
}
/*******************************************************************************

@ -34,9 +34,10 @@
*/
/* Includes ------------------------------------------------------------------*/
#include "usbd_config.h"
#include "usbd_descriptors.h"
#include "usbd_core.h"
#include "usbd_desc.h"
#include "usbd_conf.h"
#include "usbd_msc.h"
/** @addtogroup STM32_USB_OTG_DEVICE_LIBRARY
* @{
*/
@ -145,6 +146,26 @@ __ALIGN_BEGIN uint8_t USBD_LangIDDesc[USB_LEN_LANGID_STR_DESC] __ALIGN_END =
#pragma data_alignment=4
#endif
__ALIGN_BEGIN uint8_t USBD_StrDesc[USBD_MAX_STR_DESC_SIZ] __ALIGN_END;
/* USB Mass storage Standard Inquiry Data */
const int8_t STORAGE_Inquirydata_FS[] = { //36
/* LUN 0 */
0x00,
0x80,
0x02,
0x02,
(STANDARD_INQUIRY_DATA_LEN - 5),
0x00,
0x00,
0x00,
'S', 'T', 'M', ' ', ' ', ' ', ' ', ' ', /* Manufacturer : 8 bytes */
'P', 'r', 'o', 'd', 'u', 'c', 't', ' ', /* Product : 16 Bytes */
' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ',
'0', '.', '0' ,'1', /* Version : 4 Bytes */
};
/**
* @}
*/
@ -195,14 +216,7 @@ uint8_t * USBD_FS_LangIDStrDescriptor( USBD_SpeedTypeDef speed , uint16_t *leng
*/
uint8_t * USBD_FS_ProductStrDescriptor( USBD_SpeedTypeDef speed , uint16_t *length)
{
// if(speed == 0)
// {
// USBD_GetString (USBD_PRODUCT_STRING_FS, USBD_StrDesc, length);
// }
// else
// {
USBD_GetString (USBD_PRODUCT_STRING_FS, USBD_StrDesc, length);
// }
USBD_GetString (USBD_PRODUCT_STRING_FS, USBD_StrDesc, length);
return USBD_StrDesc;
}
@ -228,14 +242,7 @@ uint8_t * USBD_FS_ManufacturerStrDescriptor( USBD_SpeedTypeDef speed , uint16_t
*/
uint8_t * USBD_FS_SerialStrDescriptor( USBD_SpeedTypeDef speed , uint16_t *length)
{
if(speed == USBD_SPEED_HIGH)
{
USBD_GetString (USBD_SERIALNUMBER_STRING_FS, USBD_StrDesc, length);
}
else
{
USBD_GetString (USBD_SERIALNUMBER_STRING_FS, USBD_StrDesc, length);
}
USBD_GetString (USBD_SERIALNUMBER_STRING_FS, USBD_StrDesc, length);
return USBD_StrDesc;
}
@ -248,14 +255,7 @@ uint8_t * USBD_FS_SerialStrDescriptor( USBD_SpeedTypeDef speed , uint16_t *leng
*/
uint8_t * USBD_FS_ConfigStrDescriptor( USBD_SpeedTypeDef speed , uint16_t *length)
{
if(speed == USBD_SPEED_HIGH)
{
USBD_GetString (USBD_CONFIGURATION_STRING_FS, USBD_StrDesc, length);
}
else
{
USBD_GetString (USBD_CONFIGURATION_STRING_FS, USBD_StrDesc, length);
}
USBD_GetString (USBD_CONFIGURATION_STRING_FS, USBD_StrDesc, length);
return USBD_StrDesc;
}
@ -268,14 +268,7 @@ uint8_t * USBD_FS_ConfigStrDescriptor( USBD_SpeedTypeDef speed , uint16_t *leng
*/
uint8_t * USBD_FS_InterfaceStrDescriptor( USBD_SpeedTypeDef speed , uint16_t *length)
{
if(speed == 0)
{
USBD_GetString (USBD_INTERFACE_STRING_FS, USBD_StrDesc, length);
}
else
{
USBD_GetString (USBD_INTERFACE_STRING_FS, USBD_StrDesc, length);
}
USBD_GetString (USBD_INTERFACE_STRING_FS, USBD_StrDesc, length);
return USBD_StrDesc;
}
/**

@ -1,251 +0,0 @@
/**
******************************************************************************
* @file : usbd_storage_if.c
* @author : MCD Application Team
* @version : V1.1.0
* @date : 19-March-2012
* @brief : Memory management layer
******************************************************************************
* COPYRIGHT(c) 2015 STMicroelectronics
*
* Redistribution and use in source and binary forms, with or without modification,
* are permitted provided that the following conditions are met:
* 1. Redistributions of source code must retain the above copyright notice,
* this list of conditions and the following disclaimer.
* 2. Redistributions in binary form must reproduce the above copyright notice,
* this list of conditions and the following disclaimer in the documentation
* and/or other materials provided with the distribution.
* 3. Neither the name of STMicroelectronics nor the names of its contributors
* may be used to endorse or promote products derived from this software
* without specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
* DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE
* FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
* DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
* SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
* CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
* OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
* OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
*
******************************************************************************
*/
/* Includes ------------------------------------------------------------------*/
#include "usbd_storage_if.h"
/* Private typedef -----------------------------------------------------------*/
/* Private define ------------------------------------------------------------*/
/* Private macro -------------------------------------------------------------*/
/* Private variables ---------------------------------------------------------*/
/* USB handler declaration */
/* Handle for USB Full Speed IP */
USBD_HandleTypeDef *hUsbDevice_0;
extern USBD_HandleTypeDef hUsbDeviceFS;
/* Private function prototypes -----------------------------------------------*/
/* Extern function prototypes ------------------------------------------------*/
/* Private functions ---------------------------------------------------------*/
#define STORAGE_LUN_NBR 1
#define STORAGE_BLK_NBR 0x10000
#define STORAGE_BLK_SIZ 0x200
static int8_t STORAGE_Init_FS (uint8_t lun);
static int8_t STORAGE_GetCapacity_FS (uint8_t lun,
uint32_t *block_num,
uint16_t *block_size);
static int8_t STORAGE_IsReady_FS (uint8_t lun);
static int8_t STORAGE_IsWriteProtected_FS (uint8_t lun);
static int8_t STORAGE_Read_FS (uint8_t lun,
uint8_t *buf,
uint32_t blk_addr,
uint16_t blk_len);
static int8_t STORAGE_Write_FS (uint8_t lun,
uint8_t *buf,
uint32_t blk_addr,
uint16_t blk_len);
static int8_t STORAGE_GetMaxLun_FS (void);
/* USER CODE BEGIN 0 */
/* USB Mass storage Standard Inquiry Data */
const int8_t STORAGE_Inquirydata_FS[] = {//36
/* LUN 0 */
0x00,
0x80,
0x02,
0x02,
(STANDARD_INQUIRY_DATA_LEN - 5),
0x00,
0x00,
0x00,
'S', 'T', 'M', ' ', ' ', ' ', ' ', ' ', /* Manufacturer : 8 bytes */
'P', 'r', 'o', 'd', 'u', 'c', 't', ' ', /* Product : 16 Bytes */
' ', ' ', ' ', ' ', ' ', ' ', ' ', ' ',
'0', '.', '0' ,'1', /* Version : 4 Bytes */
};
/* USER CODE END 0 */
USBD_StorageTypeDef USBD_Storage_Interface_fops_FS =
{
STORAGE_Init_FS,
STORAGE_GetCapacity_FS,
STORAGE_IsReady_FS,
STORAGE_IsWriteProtected_FS,
STORAGE_Read_FS,
STORAGE_Write_FS,
STORAGE_GetMaxLun_FS,
(int8_t *)STORAGE_Inquirydata_FS,
};
/*******************************************************************************
* Function Name : STORAGE_Init_FS
* Description :
* Input : None.
* Output : None.
* Return : None.
*******************************************************************************/
int8_t
STORAGE_Init_FS (uint8_t lun)
{
/* USER CODE BEGIN 2 */
if (lun >= STORAGE_LUN_NBR)
{
return (USBD_FAIL);
}
return (USBD_OK);
/* USER CODE END 2 */
}
/*******************************************************************************
* Function Name : STORAGE_GetCapacity_FS
* Description :
* Input : None.
* Output : None.
* Return : None.
*******************************************************************************/
int8_t STORAGE_GetCapacity_FS (uint8_t lun, uint32_t *block_num, uint16_t *block_size)
{
/* USER CODE BEGIN 3 */
if (lun >= STORAGE_LUN_NBR)
{
return (USBD_FAIL);
}
*block_num = STORAGE_BLK_NBR;
*block_size = STORAGE_BLK_SIZ;
return (USBD_OK);
/* USER CODE END 3 */
}
/*******************************************************************************
* Function Name : STORAGE_IsReady_FS
* Description :
* Input : None.
* Output : None.
* Return : None.
*******************************************************************************/
int8_t STORAGE_IsReady_FS (uint8_t lun)
{
/* USER CODE BEGIN 4 */
if (lun >= STORAGE_LUN_NBR)
{
return (USBD_FAIL);
}
return (USBD_OK);
/* USER CODE END 4 */
}
/*******************************************************************************
* Function Name : STORAGE_IsWriteProtected_FS
* Description :
* Input : None.
* Output : None.
* Return : None.
*******************************************************************************/
int8_t STORAGE_IsWriteProtected_FS (uint8_t lun)
{
/* USER CODE BEGIN 5 */
if (lun >= STORAGE_LUN_NBR)
{
return (USBD_FAIL);
}
return (USBD_OK);
/* USER CODE END 5 */
}
/*******************************************************************************
* Function Name : STORAGE_Read_FS
* Description :
* Input : None.
* Output : None.
* Return : None.
*******************************************************************************/
int8_t STORAGE_Read_FS (uint8_t lun,
uint8_t *buf,
uint32_t blk_addr,
uint16_t blk_len)
{
/* USER CODE BEGIN 6 */
uint16_t blockLoop;
uint16_t byteLoop;
if (lun >= STORAGE_LUN_NBR)
{
return -1;
}
for (blockLoop = 0; blockLoop < blk_len; blockLoop++) //blk_len will be 1 when scsi_blk_size = 512 bytes
{
for (byteLoop = 0; byteLoop < STORAGE_BLK_SIZ; byteLoop += 4) //STORAGE_BLK_SIZ must be a multiple of 4
{
*((__packed uint32_t *)buf) = 0;
buf += 4;
}
}
return (USBD_OK);
/* USER CODE END 6 */
}
/*******************************************************************************
* Function Name : STORAGE_Write_FS
* Description :
* Input : None.
* Output : None.
* Return : None.
*******************************************************************************/
int8_t STORAGE_Write_FS (uint8_t lun,
uint8_t *buf,
uint32_t blk_addr,
uint16_t blk_len)
{
/* USER CODE BEGIN 7 */
if (lun >= STORAGE_LUN_NBR)
{
return -1;
}
return (USBD_OK);
/* USER CODE END 7 */
}
/*******************************************************************************
* Function Name : STORAGE_GetMaxLun_FS
* Description :
* Input : None.
* Output : None.
* Return : None.
*******************************************************************************/
int8_t STORAGE_GetMaxLun_FS (void)
{
/* USER CODE BEGIN 8 */
return (STORAGE_LUN_NBR - 1);
/* USER CODE END 8 */
}
/************************ (C) COPYRIGHT STMicroelectronics *****END OF FILE****/
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