/* * Copyright 2012 Jared Boone * Copyright 2013 Benjamin Vernoux * * This file is part of HackRF. * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2, or (at your option) * any later version. * * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the * GNU General Public License for more details. * * You should have received a copy of the GNU General Public License * along with this program; see the file COPYING. If not, write to * the Free Software Foundation, Inc., 51 Franklin Street, * Boston, MA 02110-1301, USA. */ #include "usb_api_transceiver.h" #include #include #include #include #include #include #include #include #include #include "sgpio_isr.h" #include "usb_endpoint.h" static volatile transceiver_mode_t _transceiver_mode = TRANSCEIVER_MODE_OFF; void set_transceiver_mode(const transceiver_mode_t new_transceiver_mode) { baseband_streaming_disable(); usb_endpoint_disable(&usb_endpoint_bulk_in); usb_endpoint_disable(&usb_endpoint_bulk_out); _transceiver_mode = new_transceiver_mode; if( _transceiver_mode == TRANSCEIVER_MODE_RX ) { gpio_clear(PORT_LED1_3, PIN_LED3); gpio_set(PORT_LED1_3, PIN_LED2); usb_endpoint_init(&usb_endpoint_bulk_in); rf_path_set_direction(RF_PATH_DIRECTION_RX); vector_table.irq[NVIC_SGPIO_IRQ] = sgpio_isr_rx; } else if (_transceiver_mode == TRANSCEIVER_MODE_TX) { gpio_clear(PORT_LED1_3, PIN_LED2); gpio_set(PORT_LED1_3, PIN_LED3); usb_endpoint_init(&usb_endpoint_bulk_out); rf_path_set_direction(RF_PATH_DIRECTION_TX); vector_table.irq[NVIC_SGPIO_IRQ] = sgpio_isr_tx; } else { gpio_clear(PORT_LED1_3, PIN_LED2); gpio_clear(PORT_LED1_3, PIN_LED3); rf_path_set_direction(RF_PATH_DIRECTION_OFF); vector_table.irq[NVIC_SGPIO_IRQ] = sgpio_isr_rx; } if( _transceiver_mode != TRANSCEIVER_MODE_OFF ) { baseband_streaming_enable(); } } transceiver_mode_t transceiver_mode(void) { return _transceiver_mode; } typedef struct { uint32_t freq_mhz; uint32_t freq_hz; } set_freq_params_t; set_freq_params_t set_freq_params; typedef struct { uint32_t freq_hz; uint32_t divider; } set_sample_r_params_t; set_sample_r_params_t set_sample_r_params; usb_request_status_t usb_vendor_request_set_transceiver_mode( usb_endpoint_t* const endpoint, const usb_transfer_stage_t stage ) { if( stage == USB_TRANSFER_STAGE_SETUP ) { switch( endpoint->setup.value ) { case TRANSCEIVER_MODE_OFF: case TRANSCEIVER_MODE_RX: case TRANSCEIVER_MODE_TX: set_transceiver_mode(endpoint->setup.value); usb_transfer_schedule_ack(endpoint->in); return USB_REQUEST_STATUS_OK; default: return USB_REQUEST_STATUS_STALL; } } else { return USB_REQUEST_STATUS_OK; } } usb_request_status_t usb_vendor_request_set_baseband_filter_bandwidth( usb_endpoint_t* const endpoint, const usb_transfer_stage_t stage ) { if( stage == USB_TRANSFER_STAGE_SETUP ) { const uint32_t bandwidth = (endpoint->setup.index << 16) | endpoint->setup.value; if( baseband_filter_bandwidth_set(bandwidth) ) { usb_transfer_schedule_ack(endpoint->in); return USB_REQUEST_STATUS_OK; } return USB_REQUEST_STATUS_STALL; } else { return USB_REQUEST_STATUS_OK; } } usb_request_status_t usb_vendor_request_set_freq( usb_endpoint_t* const endpoint, const usb_transfer_stage_t stage) { if (stage == USB_TRANSFER_STAGE_SETUP) { usb_transfer_schedule_block(endpoint->out, &set_freq_params, sizeof(set_freq_params_t), NULL, NULL); return USB_REQUEST_STATUS_OK; } else if (stage == USB_TRANSFER_STAGE_DATA) { if( set_freq(set_freq_params.freq_mhz, set_freq_params.freq_hz) ) { usb_transfer_schedule_ack(endpoint->in); return USB_REQUEST_STATUS_OK; } return USB_REQUEST_STATUS_STALL; } else { return USB_REQUEST_STATUS_OK; } } usb_request_status_t usb_vendor_request_set_sample_rate_frac( usb_endpoint_t* const endpoint, const usb_transfer_stage_t stage) { if (stage == USB_TRANSFER_STAGE_SETUP) { usb_transfer_schedule_block(endpoint->out, &set_sample_r_params, sizeof(set_sample_r_params_t), NULL, NULL); return USB_REQUEST_STATUS_OK; } else if (stage == USB_TRANSFER_STAGE_DATA) { if( sample_rate_frac_set(set_sample_r_params.freq_hz * 2, set_sample_r_params.divider ) ) { usb_transfer_schedule_ack(endpoint->in); return USB_REQUEST_STATUS_OK; } return USB_REQUEST_STATUS_STALL; } else { return USB_REQUEST_STATUS_OK; } } usb_request_status_t usb_vendor_request_set_amp_enable( usb_endpoint_t* const endpoint, const usb_transfer_stage_t stage) { if (stage == USB_TRANSFER_STAGE_SETUP) { switch (endpoint->setup.value) { case 0: rf_path_set_lna(0); usb_transfer_schedule_ack(endpoint->in); return USB_REQUEST_STATUS_OK; case 1: rf_path_set_lna(1); usb_transfer_schedule_ack(endpoint->in); return USB_REQUEST_STATUS_OK; default: return USB_REQUEST_STATUS_STALL; } } else { return USB_REQUEST_STATUS_OK; } } usb_request_status_t usb_vendor_request_set_lna_gain( usb_endpoint_t* const endpoint, const usb_transfer_stage_t stage) { if( stage == USB_TRANSFER_STAGE_SETUP ) { const uint8_t value = max2837_set_lna_gain(endpoint->setup.index); endpoint->buffer[0] = value; usb_transfer_schedule_block(endpoint->in, &endpoint->buffer, 1, NULL, NULL); usb_transfer_schedule_ack(endpoint->out); return USB_REQUEST_STATUS_OK; } return USB_REQUEST_STATUS_OK; } usb_request_status_t usb_vendor_request_set_vga_gain( usb_endpoint_t* const endpoint, const usb_transfer_stage_t stage) { if( stage == USB_TRANSFER_STAGE_SETUP ) { const uint8_t value = max2837_set_vga_gain(endpoint->setup.index); endpoint->buffer[0] = value; usb_transfer_schedule_block(endpoint->in, &endpoint->buffer, 1, NULL, NULL); usb_transfer_schedule_ack(endpoint->out); return USB_REQUEST_STATUS_OK; } return USB_REQUEST_STATUS_OK; } usb_request_status_t usb_vendor_request_set_txvga_gain( usb_endpoint_t* const endpoint, const usb_transfer_stage_t stage) { if( stage == USB_TRANSFER_STAGE_SETUP ) { const uint8_t value = max2837_set_txvga_gain(endpoint->setup.index); endpoint->buffer[0] = value; usb_transfer_schedule_block(endpoint->in, &endpoint->buffer, 1, NULL, NULL); usb_transfer_schedule_ack(endpoint->out); return USB_REQUEST_STATUS_OK; } return USB_REQUEST_STATUS_OK; } usb_request_status_t usb_vendor_request_set_if_freq( usb_endpoint_t* const endpoint, const usb_transfer_stage_t stage ) { if( stage == USB_TRANSFER_STAGE_SETUP ) { if( set_freq_if((uint32_t)endpoint->setup.index * 1000 * 1000) ) { usb_transfer_schedule_ack(endpoint->in); } else { return USB_REQUEST_STATUS_STALL; } } return USB_REQUEST_STATUS_OK; }