147 lines
6.1 KiB
C
147 lines
6.1 KiB
C
/*
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* CAN device - SJA1000 chip emulation for QEMU
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*
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* Copyright (c) 2013-2014 Jin Yang
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* Copyright (c) 2014-2018 Pavel Pisa
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*
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* Initial development supported by Google GSoC 2013 from RTEMS project slot
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN
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* THE SOFTWARE.
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*/
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#ifndef HW_CAN_SJA1000_H
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#define HW_CAN_SJA1000_H
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#include "exec/hwaddr.h"
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#include "net/can_emu.h"
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#define CAN_SJA_MEM_SIZE 128
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/* The max size for a message buffer, EFF and DLC=8, DS-p39 */
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#define SJA_MSG_MAX_LEN 13
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/* The receive buffer size. */
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#define SJA_RCV_BUF_LEN 64
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typedef struct CanSJA1000State {
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/* PeliCAN state and registers sorted by address */
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uint8_t mode; /* 0 .. Mode register, DS-p26 */
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/* 1 .. Command register */
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uint8_t status_pel; /* 2 .. Status register, p15 */
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uint8_t interrupt_pel; /* 3 .. Interrupt register */
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uint8_t interrupt_en; /* 4 .. Interrupt Enable register */
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uint8_t rxmsg_cnt; /* 29 .. RX message counter. DS-p49 */
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uint8_t rxbuf_start; /* 30 .. RX buffer start address, DS-p49 */
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uint8_t clock; /* 31 .. Clock Divider register, DS-p55 */
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uint8_t code_mask[8]; /* 16~23 */
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uint8_t tx_buff[13]; /* 96~108 .. transmit buffer */
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/* 10~19 .. transmit buffer for BasicCAN */
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uint8_t rx_buff[SJA_RCV_BUF_LEN]; /* 32~95 .. 64bytes Rx FIFO */
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uint32_t rx_ptr; /* Count by bytes. */
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uint32_t rx_cnt; /* Count by bytes. */
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/* PeliCAN state and registers sorted by address */
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uint8_t control; /* 0 .. Control register */
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/* 1 .. Command register */
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uint8_t status_bas; /* 2 .. Status register */
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uint8_t interrupt_bas; /* 3 .. Interrupt register */
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uint8_t code; /* 4 .. Acceptance code register */
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uint8_t mask; /* 5 .. Acceptance mask register */
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qemu_can_filter filter[4];
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qemu_irq irq;
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CanBusClientState bus_client;
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} CanSJA1000State;
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/* PeliCAN mode */
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enum SJA1000_PeliCAN_regs {
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SJA_MOD = 0x00, /* Mode control register */
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SJA_CMR = 0x01, /* Command register */
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SJA_SR = 0x02, /* Status register */
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SJA_IR = 0x03, /* Interrupt register */
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SJA_IER = 0x04, /* Interrupt Enable */
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SJA_BTR0 = 0x06, /* Bus Timing register 0 */
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SJA_BTR1 = 0x07, /* Bus Timing register 1 */
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SJA_OCR = 0x08, /* Output Control register */
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SJA_ALC = 0x0b, /* Arbitration Lost Capture */
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SJA_ECC = 0x0c, /* Error Code Capture */
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SJA_EWLR = 0x0d, /* Error Warning Limit */
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SJA_RXERR = 0x0e, /* RX Error Counter */
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SJA_TXERR0 = 0x0e, /* TX Error Counter */
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SJA_TXERR1 = 0x0f,
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SJA_RMC = 0x1d, /* Rx Message Counter
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* number of messages in RX FIFO
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*/
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SJA_RBSA = 0x1e, /* Rx Buffer Start Addr
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* address of current message
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*/
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SJA_FRM = 0x10, /* Transmit Buffer
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* write: Receive Buffer
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* read: Frame Information
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*/
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/*
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* ID bytes (11 bits in 0 and 1 for standard message or
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* 16 bits in 0,1 and 13 bits in 2,3 for extended message)
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* The most significant bit of ID is placed in MSB
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* position of ID0 register.
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*/
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SJA_ID0 = 0x11, /* ID for standard and extended frames */
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SJA_ID1 = 0x12,
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SJA_ID2 = 0x13, /* ID cont. for extended frames */
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SJA_ID3 = 0x14,
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SJA_DATS = 0x13, /* Data start standard frame */
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SJA_DATE = 0x15, /* Data start extended frame */
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SJA_ACR0 = 0x10, /* Acceptance Code (4 bytes) in RESET mode */
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SJA_AMR0 = 0x14, /* Acceptance Mask (4 bytes) in RESET mode */
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SJA_PeliCAN_AC_LEN = 4, /* 4 bytes */
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SJA_CDR = 0x1f /* Clock Divider */
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};
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/* BasicCAN mode */
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enum SJA1000_BasicCAN_regs {
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SJA_BCAN_CTR = 0x00, /* Control register */
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SJA_BCAN_CMR = 0x01, /* Command register */
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SJA_BCAN_SR = 0x02, /* Status register */
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SJA_BCAN_IR = 0x03 /* Interrupt register */
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};
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void can_sja_hardware_reset(CanSJA1000State *s);
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void can_sja_mem_write(CanSJA1000State *s, hwaddr addr, uint64_t val,
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unsigned size);
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uint64_t can_sja_mem_read(CanSJA1000State *s, hwaddr addr, unsigned size);
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int can_sja_connect_to_bus(CanSJA1000State *s, CanBusState *bus);
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void can_sja_disconnect(CanSJA1000State *s);
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int can_sja_init(CanSJA1000State *s, qemu_irq irq);
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bool can_sja_can_receive(CanBusClientState *client);
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ssize_t can_sja_receive(CanBusClientState *client,
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const qemu_can_frame *frames, size_t frames_cnt);
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extern const VMStateDescription vmstate_can_sja;
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#endif
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