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369 lines
11 KiB
369 lines
11 KiB
/*
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* upstream_msc.c
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*
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* Created on: 4/07/2015
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* Author: Robert Fisk
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*
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* This Source Code Form is subject to the terms of the Mozilla Public
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* License, v. 2.0. If a copy of the MPL was not distributed with this
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* file, You can obtain one at https://mozilla.org/MPL/2.0/.
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*/
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#include "upstream_interface_def.h"
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#include "upstream_msc.h"
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#include "upstream_spi.h"
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#include "upstream_statemachine.h"
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#include "stm32f4xx_hal.h"
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//Stuff we need to save for our callbacks to use:
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UpstreamMSCCallbackTypeDef TestReadyCallback;
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UpstreamMSCCallbackUintPacketTypeDef GetCapacityCallback;
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UpstreamMSCCallbackPacketTypeDef GetStreamDataCallback;
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uint64_t BlockStart;
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uint32_t BlockCount;
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uint32_t ByteCount;
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UpstreamPacketTypeDef* ReadStreamPacket;
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uint8_t ReadStreamBusy;
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static void Upstream_MSC_TestReadyFreePacketCallback(UpstreamPacketTypeDef* freePacket);
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static void Upstream_MSC_TestReadyReplyCallback(UpstreamPacketTypeDef* replyPacket);
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static void Upstream_MSC_GetCapacityReplyCallback(UpstreamPacketTypeDef* replyPacket);
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static void Upstream_MSC_GetStreamDataPacketCallback(UpstreamPacketTypeDef* replyPacket);
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static void Upstream_MSC_BeginReadFreePacketCallback(UpstreamPacketTypeDef* freePacket);
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static void Upstream_MSC_BeginWriteFreePacketCallback(UpstreamPacketTypeDef* freePacket);
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static void Upstream_MSC_BeginWriteReplyCallback(UpstreamPacketTypeDef* replyPacket);
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HAL_StatusTypeDef Upstream_MSC_TestReady(UpstreamMSCCallbackTypeDef callback)
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{
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if (Upstream_StateMachine_CheckActiveClass() != COMMAND_CLASS_MASS_STORAGE)
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{
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//UPSTREAM_STATEMACHINE_FREAKOUT;
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return HAL_ERROR;
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}
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TestReadyCallback = callback;
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return Upstream_GetFreePacket(Upstream_MSC_TestReadyFreePacketCallback);
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}
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void Upstream_MSC_TestReadyFreePacketCallback(UpstreamPacketTypeDef* freePacket)
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{
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freePacket->Length16 = UPSTREAM_PACKET_HEADER_LEN_16;
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freePacket->CommandClass = COMMAND_CLASS_MASS_STORAGE;
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freePacket->Command = COMMAND_MSC_TEST_UNIT_READY;
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if (Upstream_TransmitPacket(freePacket) == HAL_OK)
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{
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//Upstream_ReleasePacket(freePacket); /////////!!!!!!!!!!!!!???????????
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if (Upstream_ReceivePacket(Upstream_MSC_TestReadyReplyCallback) != HAL_OK)
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{
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TestReadyCallback(HAL_ERROR);
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}
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return;
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}
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//else:
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Upstream_ReleasePacket(freePacket);
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TestReadyCallback(HAL_ERROR);
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}
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void Upstream_MSC_TestReadyReplyCallback(UpstreamPacketTypeDef* replyPacket)
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{
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if (Upstream_StateMachine_CheckActiveClass() != COMMAND_CLASS_MASS_STORAGE)
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{
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return;
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}
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if (replyPacket == NULL)
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{
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TestReadyCallback(HAL_ERROR);
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return;
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}
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if ((replyPacket->Length16 != (UPSTREAM_PACKET_HEADER_LEN_16 + 1)) ||
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(replyPacket->Data[0] != HAL_OK))
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{
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Upstream_ReleasePacket(replyPacket);
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TestReadyCallback(HAL_ERROR);
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return;
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}
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Upstream_ReleasePacket(replyPacket);
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TestReadyCallback(HAL_OK);
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}
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HAL_StatusTypeDef Upstream_MSC_GetCapacity(UpstreamMSCCallbackUintPacketTypeDef callback)
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{
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UpstreamPacketTypeDef* freePacket;
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if (Upstream_StateMachine_CheckActiveClass() != COMMAND_CLASS_MASS_STORAGE)
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{
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return HAL_ERROR;
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}
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GetCapacityCallback = callback;
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freePacket = Upstream_GetFreePacketImmediately();
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if (freePacket == NULL)
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{
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return HAL_ERROR;
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}
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freePacket->Length16 = UPSTREAM_PACKET_HEADER_LEN_16;
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freePacket->CommandClass = COMMAND_CLASS_MASS_STORAGE;
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freePacket->Command = COMMAND_MSC_GET_CAPACITY;
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if (Upstream_TransmitPacket(freePacket) == HAL_OK)
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{
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return Upstream_ReceivePacket(Upstream_MSC_GetCapacityReplyCallback);
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}
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//else:
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Upstream_ReleasePacket(freePacket); ////////?????????
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return HAL_ERROR;
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}
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void Upstream_MSC_GetCapacityReplyCallback(UpstreamPacketTypeDef* replyPacket)
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{
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uint32_t uint1;
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uint32_t uint2;
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if (Upstream_StateMachine_CheckActiveClass() != COMMAND_CLASS_MASS_STORAGE)
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{
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return;
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}
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if (replyPacket == NULL)
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{
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GetCapacityCallback(NULL, 0, 0);
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return;
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}
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if (replyPacket->Length16 != (UPSTREAM_PACKET_HEADER_LEN_16 + (8 / 2)))
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{
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Upstream_ReleasePacket(replyPacket);
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GetCapacityCallback(NULL, 0, 0);
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return;
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}
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uint1 = *(uint32_t*)&(replyPacket->Data[0]);
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uint2 = *(uint32_t*)&(replyPacket->Data[4]);
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GetCapacityCallback(replyPacket, uint1, uint2); //usb_msc_scsi will use this packet, so don't release now
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}
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HAL_StatusTypeDef Upstream_MSC_BeginRead(UpstreamMSCCallbackTypeDef callback,
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uint64_t readBlockStart,
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uint32_t readBlockCount,
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uint32_t readByteCount)
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{
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if (Upstream_StateMachine_CheckActiveClass() != COMMAND_CLASS_MASS_STORAGE)
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{
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return HAL_ERROR;
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}
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BlockStart = readBlockStart;
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BlockCount = readBlockCount;
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ByteCount = readByteCount;
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ReadStreamPacket = NULL; //Prepare for GetStreamDataPacket's use
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ReadStreamBusy = 0;
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TestReadyCallback = callback;
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return Upstream_GetFreePacket(Upstream_MSC_BeginReadFreePacketCallback);
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}
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void Upstream_MSC_BeginReadFreePacketCallback(UpstreamPacketTypeDef* freePacket)
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{
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freePacket->Length16 = UPSTREAM_PACKET_HEADER_LEN_16 + ((4 * 3) / 2);
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freePacket->CommandClass = COMMAND_CLASS_MASS_STORAGE;
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freePacket->Command = COMMAND_MSC_READ;
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*(uint64_t*)&(freePacket->Data[0]) = BlockStart;
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*(uint32_t*)&(freePacket->Data[8]) = BlockCount;
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if (Upstream_TransmitPacket(freePacket) == HAL_OK)
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{
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if (Upstream_ReceivePacket(Upstream_MSC_TestReadyReplyCallback) != HAL_OK) //Re-use TestReadyReplyCallback because it does exactly what we want!
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{
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TestReadyCallback(HAL_ERROR);
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}
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return;
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}
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//else:
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Upstream_ReleasePacket(freePacket);
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TestReadyCallback(HAL_ERROR);
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}
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HAL_StatusTypeDef Upstream_MSC_GetStreamDataPacket(UpstreamMSCCallbackPacketTypeDef callback)
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{
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if (Upstream_StateMachine_CheckActiveClass() != COMMAND_CLASS_MASS_STORAGE)
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{
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return HAL_ERROR;
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}
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GetStreamDataCallback = callback;
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if (ReadStreamBusy != 0)
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{
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return HAL_OK;
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}
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ReadStreamBusy = 1;
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if (ReadStreamPacket && GetStreamDataCallback) //Do we have a stored packet and an address to send it?
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{
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Upstream_MSC_GetStreamDataPacketCallback(ReadStreamPacket); //Send it now!
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ReadStreamPacket = NULL;
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return HAL_OK; //Our callback will call us again, so we don't need to get a packet in this case.
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}
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return Upstream_ReceivePacket(Upstream_MSC_GetStreamDataPacketCallback);
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}
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void Upstream_MSC_GetStreamDataPacketCallback(UpstreamPacketTypeDef* replyPacket)
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{
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uint16_t dataLength8;
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ReadStreamBusy = 0;
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if (Upstream_StateMachine_CheckActiveClass() != COMMAND_CLASS_MASS_STORAGE)
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{
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return;
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}
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if (GetStreamDataCallback == NULL)
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{
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ReadStreamPacket = replyPacket; //We used up our callback already, so save this one for later.
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return;
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}
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if (replyPacket == NULL)
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{
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GetStreamDataCallback(NULL, 0);
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return;
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}
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dataLength8 = (replyPacket->Length16 - UPSTREAM_PACKET_HEADER_LEN_16) * 2;
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if (((replyPacket->CommandClass & COMMAND_CLASS_DATA_FLAG) == 0) || //Any 'command' reply (as opposed to 'data' reply) is an automatic fail here
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(replyPacket->Length16 <= UPSTREAM_PACKET_HEADER_LEN_16) || //Should be at least one data byte in the reply.
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(dataLength8 > ByteCount)) //No more data than expected transfer length
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{
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GetStreamDataCallback(NULL, 0);
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return;
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}
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ByteCount -= dataLength8;
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GetStreamDataCallback(replyPacket, dataLength8); //usb_msc_scsi will use this packet, so don't release now
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if (ByteCount > 0)
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{
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Upstream_MSC_GetStreamDataPacket(NULL); //Try to get the next packet now, before USB asks for it
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}
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}
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HAL_StatusTypeDef Upstream_MSC_BeginWrite(UpstreamMSCCallbackTypeDef callback,
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uint64_t writeBlockStart,
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uint32_t writeBlockCount)
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{
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if (Upstream_StateMachine_CheckActiveClass() != COMMAND_CLASS_MASS_STORAGE)
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{
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return HAL_ERROR;
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}
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BlockStart = writeBlockStart;
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BlockCount = writeBlockCount;
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TestReadyCallback = callback;
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return Upstream_GetFreePacket(Upstream_MSC_BeginWriteFreePacketCallback);
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}
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void Upstream_MSC_BeginWriteFreePacketCallback(UpstreamPacketTypeDef* freePacket)
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{
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freePacket->Length16 = UPSTREAM_PACKET_HEADER_LEN_16 + ((4 * 3) / 2);
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freePacket->CommandClass = COMMAND_CLASS_MASS_STORAGE;
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freePacket->Command = COMMAND_MSC_WRITE;
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*(uint64_t*)&(freePacket->Data[0]) = BlockStart;
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*(uint32_t*)&(freePacket->Data[8]) = BlockCount;
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if (Upstream_TransmitPacket(freePacket) == HAL_OK)
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{
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if (Upstream_ReceivePacket(Upstream_MSC_BeginWriteReplyCallback) != HAL_OK)
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{
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TestReadyCallback(HAL_ERROR);
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}
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return;
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}
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//else:
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Upstream_ReleasePacket(freePacket);
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TestReadyCallback(HAL_ERROR);
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}
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void Upstream_MSC_BeginWriteReplyCallback(UpstreamPacketTypeDef* replyPacket)
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{
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uint8_t tempResult;
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if (Upstream_StateMachine_CheckActiveClass() != COMMAND_CLASS_MASS_STORAGE)
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{
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return;
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}
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if (replyPacket == NULL)
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{
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TestReadyCallback(HAL_ERROR);
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return;
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}
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if ((replyPacket->Length16 != (UPSTREAM_PACKET_HEADER_LEN_16 + 1)) ||
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((replyPacket->Data[0] != HAL_OK) && (replyPacket->Data[0] != HAL_BUSY)))
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{
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Upstream_ReleasePacket(replyPacket);
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TestReadyCallback(HAL_ERROR);
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return;
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}
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tempResult = replyPacket->Data[0];
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Upstream_ReleasePacket(replyPacket);
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TestReadyCallback(tempResult);
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}
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HAL_StatusTypeDef Upstream_MSC_PutStreamDataPacket(UpstreamPacketTypeDef* packetToSend,
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uint32_t dataLength8)
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{
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if (Upstream_StateMachine_CheckActiveClass() != COMMAND_CLASS_MASS_STORAGE)
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{
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return HAL_ERROR;
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}
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if ((dataLength8 % 2) != 0)
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{
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return HAL_ERROR;
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}
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packetToSend->Length16 = (dataLength8 / 2) + UPSTREAM_PACKET_HEADER_LEN_16;
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packetToSend->CommandClass = COMMAND_CLASS_MASS_STORAGE | COMMAND_CLASS_DATA_FLAG;
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packetToSend->Command = COMMAND_MSC_WRITE;
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return Upstream_TransmitPacket(packetToSend);
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}
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