/**
* ZuluSCSI™ - Copyright (c) 2022 Rabbit Hole Computing™
*
* ZuluSCSI™ firmware is licensed under the GPL version 3 or any later version.
*
* https://www.gnu.org/licenses/gpl-3.0.html
* ----
* 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 3 of the License, 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. If not, see .
**/
// GPIO definitions for ZuluSCSI RP2040-based hardware
#pragma once
#include
// SCSI data input/output port.
// The data bus uses external bidirectional buffer, with
// direction controlled by DATA_DIR pin.
#define SCSI_IO_DB0 12
#define SCSI_IO_DB1 13
#define SCSI_IO_DB2 14
#define SCSI_IO_DB3 15
#define SCSI_IO_DB4 16
#define SCSI_IO_DB5 17
#define SCSI_IO_DB6 18
#define SCSI_IO_DB7 19
#define SCSI_IO_DBP 20
#define SCSI_IO_DATA_MASK 0x1FF000
#define SCSI_IO_SHIFT 12
// Data direction control
#define SCSI_DATA_DIR 22
// SCSI output status lines
#define SCSI_OUT_IO 7
#define SCSI_OUT_CD 23
#define SCSI_OUT_MSG 26
#define SCSI_OUT_RST 47
#define SCSI_OUT_BSY 45
#define SCSI_OUT_REQ 21
#define SCSI_OUT_SEL 44
// SCSI input status signals
#define SCSI_IN_SEL 23
#define SCSI_IN_ACK 27
#define SCSI_IN_ATN 6
#define SCSI_IN_BSY 26
#define SCSI_IN_RST 46
// Status line outputs for initiator mode
#define SCSI_OUT_ACK 27
#define SCSI_OUT_ATN 6
// Status line inputs for initiator mode
#define SCSI_IN_IO 7
#define SCSI_IN_CD 23
#define SCSI_IN_MSG 26
#define SCSI_IN_REQ 21
// Status LED pins
#define LED_PIN 33
// SD card pins in SDIO mode
#define SDIO_CLK 34
#define SDIO_CMD 35
#define SDIO_D0 36
#define SDIO_D1 37
#define SDIO_D2 38
#define SDIO_D3 39
// SD card pins in SPI mode
#define SD_SPI spi0
#define SD_SPI_SCK SDIO_CLK
#define SD_SPI_MOSI SDIO_CMD
#define SD_SPI_MISO SDIO_D0
#define SD_SPI_CS SDIO_D3
#ifndef ENABLE_AUDIO_OUTPUT_SPDIF
// IO expander I2C
#define GPIO_I2C_SDA 30
#define GPIO_I2C_SCL 31
#else
// IO expander I2C pins being used as SPI for audio
#define AUDIO_SPI spi1
#define GPIO_EXP_SPARE 30
#define GPIO_EXP_AUDIO 31
#endif
#ifdef ENABLE_AUDIO_OUTPUT_I2S
#define GPIO_I2S_BCLK 8
#define GPIO_I2S_WS 9
#define GPIO_I2S_DOUT 10
#define I2S_DMA_IRQ_NUM DMA_IRQ_2
#endif
// Other pins
#define SWO_PIN 32
// DIP switch pins
#define HAS_DIP_SWITCHES
#define DIP_INITIATOR SCSI_OUT_ACK
#define DIP_DBGLOG SWO_PIN
#define DIP_TERM SCSI_OUT_REQ
// Below are GPIO access definitions that are used from scsiPhy.cpp.
// Write a single SCSI pin.
// Example use: SCSI_OUT(ATN, 1) sets SCSI_ATN to low (active) state.
#define SCSI_OUT(pin, state) \
((SCSI_OUT_ ## pin) > 31 ? \
*(state ? &sio_hw->gpio_hi_clr : &sio_hw->gpio_hi_set) = 1 << ((SCSI_OUT_ ## pin) - 32) \
: \
*(state ? &sio_hw->gpio_clr : &sio_hw->gpio_set) = 1 << (SCSI_OUT_ ## pin) \
)
// Read a single SCSI pin.
// Example use: SCSI_IN(ATN), returns 1 for active low state.
#define SCSI_IN(pin) \
((SCSI_IN_ ## pin) > 31 ? \
((sio_hw->gpio_hi_in & (1 << ((SCSI_IN_ ## pin) - 32))) ? 0 : 1) \
: \
((sio_hw->gpio_in & (1 << (SCSI_IN_ ## pin))) ? 0 : 1) \
)
// Set pin directions for initiator vs. target mode
#define SCSI_ENABLE_INITIATOR() \
(sio_hw->gpio_oe_set = (1 << SCSI_OUT_ACK) | \
(1 << SCSI_OUT_ATN)), \
(sio_hw->gpio_oe_clr = (1 << SCSI_IN_IO) | \
(1 << SCSI_IN_CD) | \
(1 << SCSI_IN_MSG) | \
(1 << SCSI_IN_REQ))
// Enable driving of shared control pins
#define SCSI_ENABLE_CONTROL_OUT() \
(sio_hw->gpio_oe_set = (1 << SCSI_OUT_CD) | \
(1 << SCSI_OUT_MSG))
// Set SCSI data bus to output
#define SCSI_ENABLE_DATA_OUT() \
(sio_hw->gpio_clr = (1 << SCSI_DATA_DIR), \
sio_hw->gpio_oe_set = SCSI_IO_DATA_MASK)
// Write SCSI data bus, also sets REQ to inactive.
#define SCSI_OUT_DATA(data) \
gpio_put_masked(SCSI_IO_DATA_MASK | (1 << SCSI_OUT_REQ), \
(g_scsi_parity_lookup[(uint8_t)(data)] << SCSI_IO_SHIFT) | (1 << SCSI_OUT_REQ)), \
SCSI_ENABLE_DATA_OUT()
// Release SCSI data bus and REQ signal
#define SCSI_RELEASE_DATA_REQ() \
(sio_hw->gpio_oe_clr = SCSI_IO_DATA_MASK, \
sio_hw->gpio_set = (1 << SCSI_DATA_DIR) | (1 << SCSI_OUT_REQ))
// Release all SCSI outputs
#define SCSI_RELEASE_OUTPUTS() \
SCSI_RELEASE_DATA_REQ(), \
sio_hw->gpio_oe_clr = (1 << SCSI_OUT_CD) | \
(1 << SCSI_OUT_MSG), \
sio_hw->gpio_set = (1 << SCSI_OUT_IO) | \
(1 << SCSI_OUT_CD) | \
(1 << SCSI_OUT_MSG) | \
(1 << SCSI_OUT_REQ), \
sio_hw->gpio_hi_set = (1 << (SCSI_OUT_RST - 32)) | \
(1 << (SCSI_OUT_BSY - 32)) | \
(1 << (SCSI_OUT_SEL - 32))
// Read SCSI data bus
#define SCSI_IN_DATA() \
(~sio_hw->gpio_in & SCSI_IO_DATA_MASK) >> SCSI_IO_SHIFT