mirror of
https://github.com/oliverschmidt/contiki.git
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366 lines
9.9 KiB
C
366 lines
9.9 KiB
C
#include <usb-msc-bulk.h>
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#include <usb-api.h>
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#include <usb-core.h>
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#include <sys/process.h>
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#include <stdio.h>
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#include <rbc_const.h>
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#include <rbc_struct.h>
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#include <string.h>
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#ifdef DEBUG
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#define PRINTF(...) printf(__VA_ARGS__)
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#else
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#define PRINTF(...)
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#endif
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#ifndef USB_RBC_NUM_BLOCKS
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#define USB_RBC_NUM_BLOCKS 32
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#endif
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static struct spc2_sense_data sense_data =
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{
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SCSI_SENSE_CURRENT_ERROR,
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0,
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0,
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{0},
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(sizeof(struct spc2_sense_data)
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- offsetof(struct spc2_sense_data, command_specific))
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};
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static void
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scsi_error(unsigned int sense_key, unsigned int asc, int32_t info)
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{
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sense_data.response_code = SCSI_SENSE_INFORMATION_VALID | SCSI_SENSE_CURRENT_ERROR;
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sense_data.information[0] = (info >> 24) & 0xff;
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sense_data.information[1] = (info >> 16) & 0xff;
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sense_data.information[2] = (info >> 8) & 0xff;
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sense_data.information[3] = info & 0xff;
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sense_data.sense_key = sense_key;
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sense_data.asc = (asc >> 8) & 0xff;
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sense_data.ascq = asc & 0xff;
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}
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static void
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scsi_ok()
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{
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sense_data.response_code = SCSI_SENSE_CURRENT_ERROR;
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sense_data.sense_key = SCSI_SENSE_KEY_NO_SENSE;
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sense_data.asc = 0x00;
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sense_data.ascq = 0x00;
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};
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static const struct spc2_std_inquiry_data std_inquiry_data =
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{
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SCSI_STD_INQUIRY_CONNECTED | SCSI_STD_INQUIRY_TYPE_RBC,
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0,
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SCSI_STD_INQUIRY_VERSION_SPC2,
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0,
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(sizeof(struct spc2_std_inquiry_data)
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- offsetof(struct spc2_std_inquiry_data, flags3)),
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0,
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0,
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0,
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{'F','l','u','f','w','a','r','e'},
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{'T','e','s','t',' ',' ',' ',' ',' ',' ',' ',' ',' ',' ',' ',' '},
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{'0','.','1',' '}
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};
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#define UNIT_NAME {'F','l','u','f','f','w','a','r','e',' ', \
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'P','s','e','u','d','o',' ','D','i','s','k'}
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#define UNIT_NAME_LENGTH 21
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static const struct
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{
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struct spc2_vital_product_data_head head;
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struct {
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struct spc2_vital_product_data_head head;
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char unit_name[UNIT_NAME_LENGTH];
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} descriptor;
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} CC_BYTE_ALIGNED device_identification_data =
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{
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{
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SCSI_STD_INQUIRY_CONNECTED | SCSI_STD_INQUIRY_TYPE_RBC,
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SCSI_PAGE_DEVICE_IDENTIFICATION,
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0,
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sizeof(device_identification_data.descriptor),
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},
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{
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{
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SCSI_CODE_SET_ACSII,
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SCSI_IDENTIFIER_TYPE_NON_UNIQUE,
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0,
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sizeof(device_identification_data.descriptor.unit_name)
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},
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UNIT_NAME
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}
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};
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static const struct
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{
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struct spc2_vital_product_data_head head;
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uint8_t supported[3];
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} CC_BYTE_ALIGNED supported_pages_data =
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{
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{
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SCSI_STD_INQUIRY_CONNECTED | SCSI_STD_INQUIRY_TYPE_RBC,
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SCSI_PAGE_SUPPORTED_PAGES,
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0,
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sizeof(supported_pages_data.supported),
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},
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{SCSI_PAGE_SUPPORTED_PAGES, SCSI_PAGE_UNIT_SERIAL_NUMBER,
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SCSI_PAGE_DEVICE_IDENTIFICATION}
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};
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static const struct
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{
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struct spc2_vital_product_data_head head;
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uint8_t serial_number[8];
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} CC_BYTE_ALIGNED unit_serial_number_data = {
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{
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SCSI_STD_INQUIRY_CONNECTED | SCSI_STD_INQUIRY_TYPE_RBC,
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SCSI_PAGE_SUPPORTED_PAGES,
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0,
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sizeof(unit_serial_number_data.serial_number)
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},
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{'1','2','3','4','5','6','7','8'}
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};
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static usb_msc_handler_status
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handle_inquiry_cmd(struct usb_msc_command_state *state)
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{
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struct spc2_inquiry_cmd *cmd = (struct spc2_inquiry_cmd*)state->command;
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if (cmd->flags & SCSI_INQUIRY_FLAG_CMDDT) {
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scsi_error(SCSI_SENSE_KEY_ILLEGAL_REQUEST,SCSI_ASC_INVALID_FIELD_IN_CDB,
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cmd->allocation_length);
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return USB_MSC_HANDLER_FAILED;
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}
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if (cmd->flags & SCSI_INQUIRY_FLAG_EVPD) {
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PRINTF("Requested page %02x\n", cmd->page);
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switch (cmd->page) {
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case SCSI_PAGE_SUPPORTED_PAGES:
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usb_msc_send_data((uint8_t *)&supported_pages_data,
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sizeof(supported_pages_data),
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USB_MSC_DATA_SEND | USB_MSC_DATA_LAST);
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break;
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case SCSI_PAGE_DEVICE_IDENTIFICATION:
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usb_msc_send_data((uint8_t *)&device_identification_data,
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sizeof(device_identification_data),
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USB_MSC_DATA_SEND | USB_MSC_DATA_LAST);
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break;
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case SCSI_PAGE_UNIT_SERIAL_NUMBER:
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usb_msc_send_data((uint8_t *)&unit_serial_number_data,
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sizeof(unit_serial_number_data),
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USB_MSC_DATA_SEND | USB_MSC_DATA_LAST);
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break;
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default:
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scsi_error(SCSI_SENSE_KEY_ILLEGAL_REQUEST,SCSI_ASC_INVALID_FIELD_IN_CDB,
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cmd->allocation_length);
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return USB_MSC_HANDLER_FAILED;
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}
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return USB_MSC_HANDLER_OK;
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} else {
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if (cmd->page != 0) {
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scsi_error(SCSI_SENSE_KEY_ILLEGAL_REQUEST,SCSI_ASC_INVALID_FIELD_IN_CDB,
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cmd->allocation_length);
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return USB_MSC_HANDLER_FAILED;
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}
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usb_msc_send_data((uint8_t *)&std_inquiry_data,
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sizeof(std_inquiry_data),
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USB_MSC_DATA_SEND | USB_MSC_DATA_LAST);
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}
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return USB_MSC_HANDLER_OK;
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}
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static usb_msc_handler_status
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handle_request_sense_cmd(struct usb_msc_command_state *state)
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{
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usb_msc_send_data((uint8_t *)&sense_data,
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sizeof(sense_data),
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USB_MSC_DATA_SEND | USB_MSC_DATA_LAST);
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return USB_MSC_HANDLER_OK;
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}
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static usb_msc_handler_status
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handle_test_unit_ready_cmd(struct usb_msc_command_state *state)
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{
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scsi_ok();
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return USB_MSC_HANDLER_OK;
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}
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static const struct rbc_read_capacity_data read_capacity_data =
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{
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HOST32_TO_BE_BYTES(USB_RBC_NUM_BLOCKS-1),
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HOST32_TO_BE_BYTES(512)
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};
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static usb_msc_handler_status
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handle_read_capacity(struct usb_msc_command_state *state)
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{
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usb_msc_send_data((uint8_t *)&read_capacity_data,
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sizeof(read_capacity_data),
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USB_MSC_DATA_SEND | USB_MSC_DATA_LAST);
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return USB_MSC_HANDLER_OK;
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}
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static const struct mode_sense_data {
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struct spc2_mode_parameter_header_6 header;
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struct rbc_device_parameters_page page;
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} CC_BYTE_ALIGNED mode_sense_data =
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{
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{
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(sizeof(mode_sense_data)
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- offsetof(struct mode_sense_data, header.medium_type)),
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0,0,0
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},
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{
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{SCSI_MODE_RBC_DEVICE_PAGE | SCSI_MODE_PAGE_SP,
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sizeof(mode_sense_data) - offsetof(struct mode_sense_data, page.flags1)},
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SCSI_MODE_WCD,
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HOST16_TO_BE_BYTES(512),
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HOST40_TO_BE_BYTES((long long)USB_RBC_NUM_BLOCKS),
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0x80,
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(SCSI_MODE_FORMATD | SCSI_MODE_LOCKD),
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0
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}
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};
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static usb_msc_handler_status
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handle_mode_sense(struct usb_msc_command_state *state)
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{
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struct spc2_mode_sence_6_cmd *cmd =
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(struct spc2_mode_sence_6_cmd*)state->command;
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PRINTF("%ld - %ld - %ld\n", sizeof(struct mode_sense_data), offsetof(struct mode_sense_data, page.flags1),offsetof(struct mode_sense_data, page.reserved));
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switch(cmd->page_code) {
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case SCSI_MODE_RBC_DEVICE_PAGE:
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case SCSI_MODE_SENSE_ALL_PAGES:
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usb_msc_send_data((uint8_t *)&mode_sense_data,
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sizeof(mode_sense_data),
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USB_MSC_DATA_SEND | USB_MSC_DATA_LAST);
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break;
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default:
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scsi_error(SCSI_SENSE_KEY_ILLEGAL_REQUEST,SCSI_ASC_INVALID_FIELD_IN_CDB,
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cmd->allocation_length);
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return USB_MSC_HANDLER_FAILED;
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}
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return USB_MSC_HANDLER_OK;
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}
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static usb_msc_handler_status
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handle_mode_select(struct usb_msc_command_state *state)
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{
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/* Can't change anything */
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return USB_MSC_HANDLER_OK;
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}
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static uint8_t disk_blocks[USB_RBC_NUM_BLOCKS][512];
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static usb_msc_handler_status
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handle_read(struct usb_msc_command_state *state)
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{
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struct rbc_read_cmd *cmd = (struct rbc_read_cmd*)state->command;
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unsigned long lba = be32_to_host(cmd->logical_block_address);
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unsigned long blocks = be16_to_host(cmd->transfer_length);
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PRINTF("Requested %ld blocks at %ld\n", blocks, lba);
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if (lba >= USB_RBC_NUM_BLOCKS || lba + blocks > USB_RBC_NUM_BLOCKS) {
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scsi_error(SCSI_SENSE_KEY_ILLEGAL_REQUEST,SCSI_ASC_INVALID_FIELD_IN_CDB,
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blocks);
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return USB_MSC_HANDLER_FAILED;
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}
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usb_msc_send_data((uint8_t *)&disk_blocks[lba], blocks * 512,
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USB_MSC_DATA_SEND | USB_MSC_DATA_LAST);
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scsi_ok();
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return USB_MSC_HANDLER_OK;
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}
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static void
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handle_write_done(struct usb_msc_command_state *state)
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{
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PRINTF("Wrote data\n");
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state->status = MASS_BULK_CSW_STATUS_PASSED;
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scsi_ok();
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}
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static usb_msc_handler_status
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handle_write(struct usb_msc_command_state *state)
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{
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struct rbc_write_cmd *cmd = (struct rbc_write_cmd*)state->command;
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unsigned long lba = be32_to_host(cmd->logical_block_address);
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unsigned long blocks = be16_to_host(cmd->transfer_length);
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if (lba >= USB_RBC_NUM_BLOCKS || lba + blocks > USB_RBC_NUM_BLOCKS) {
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scsi_error(SCSI_SENSE_KEY_ILLEGAL_REQUEST,SCSI_ASC_INVALID_FIELD_IN_CDB,
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blocks);
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return USB_MSC_HANDLER_FAILED;
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}
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PRINTF("Writing %ld blocks at %ld\n", blocks, lba);
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usb_msc_receive_data(disk_blocks[lba], blocks * 512,
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USB_MSC_DATA_RECEIVE | USB_MSC_DATA_LAST
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| USB_MSC_DATA_DO_CALLBACK);
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state->data_cb = handle_write_done;
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return USB_MSC_HANDLER_DELAYED;
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}
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static usb_msc_handler_status
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handle_start_stop_unit(struct usb_msc_command_state *state)
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{
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scsi_ok();
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return USB_MSC_HANDLER_OK;
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}
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static usb_msc_handler_status
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handle_verify(struct usb_msc_command_state *state)
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{
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scsi_ok();
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return USB_MSC_HANDLER_OK;
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}
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usb_msc_handler_status
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usb_msc_handle_command(struct usb_msc_command_state *state)
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{
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usb_msc_handler_status ret;
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PRINTF("Got CBW %02x\n", state->command[0]);
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switch(state->command[0]) {
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case SCSI_CMD_INQUIRY:
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ret = handle_inquiry_cmd(state);
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break;
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case SCSI_CMD_REQUEST_SENSE:
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ret = handle_request_sense_cmd(state);
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break;
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case SCSI_CMD_TEST_UNIT_READY:
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ret = handle_test_unit_ready_cmd(state);
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break;
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case SCSI_CMD_READ_CAPACITY:
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ret = handle_read_capacity(state);
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break;
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case SCSI_CMD_MODE_SENSE_6:
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ret = handle_mode_sense(state);
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break;
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case SCSI_CMD_MODE_SELECT_6:
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ret = handle_mode_select(state);
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break;
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case SCSI_CMD_READ_10:
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ret = handle_read(state);
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break;
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case SCSI_CMD_WRITE_10:
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ret = handle_write(state);
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break;
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case SCSI_CMD_VERIFY_10:
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ret = handle_verify(state);
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break;
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case SCSI_CMD_START_STOP_UNIT:
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ret = handle_start_stop_unit(state);
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break;
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default:
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printf("Unhandled request: %02x\n", state->command[0]);
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scsi_error(SCSI_SENSE_KEY_ILLEGAL_REQUEST,
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SCSI_ASC_INVALID_COMMAND_OPERATION,0);
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return USB_MSC_HANDLER_FAILED;
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}
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return ret;
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}
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void
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usb_msc_command_handler_init()
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{
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}
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