c9cf45c1a4
After a reset ESP_TCHI should contain the unique ID of the chip. This value will be overwritten with the current tranfer count if the transfer count has previously been set. So we should always return the chip id if ESP_TCHI has never been written to. Signed-off-by: Hannes Reinecke <hare@suse.de> Signed-off-by: Paolo Bonzini <pbonzini@redhat.com>
134 lines
3.1 KiB
C
134 lines
3.1 KiB
C
#ifndef QEMU_HW_ESP_H
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#define QEMU_HW_ESP_H
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#include "hw/scsi/scsi.h"
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/* esp.c */
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#define ESP_MAX_DEVS 7
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typedef void (*ESPDMAMemoryReadWriteFunc)(void *opaque, uint8_t *buf, int len);
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void esp_init(hwaddr espaddr, int it_shift,
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ESPDMAMemoryReadWriteFunc dma_memory_read,
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ESPDMAMemoryReadWriteFunc dma_memory_write,
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void *dma_opaque, qemu_irq irq, qemu_irq *reset,
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qemu_irq *dma_enable);
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#define ESP_REGS 16
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#define TI_BUFSZ 16
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typedef struct ESPState ESPState;
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struct ESPState {
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uint8_t rregs[ESP_REGS];
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uint8_t wregs[ESP_REGS];
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qemu_irq irq;
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uint8_t chip_id;
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bool tchi_written;
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int32_t ti_size;
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uint32_t ti_rptr, ti_wptr;
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uint32_t status;
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uint32_t dma;
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uint8_t ti_buf[TI_BUFSZ];
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SCSIBus bus;
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SCSIDevice *current_dev;
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SCSIRequest *current_req;
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uint8_t cmdbuf[TI_BUFSZ];
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uint32_t cmdlen;
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uint32_t do_cmd;
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/* The amount of data left in the current DMA transfer. */
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uint32_t dma_left;
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/* The size of the current DMA transfer. Zero if no transfer is in
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progress. */
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uint32_t dma_counter;
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int dma_enabled;
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uint32_t async_len;
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uint8_t *async_buf;
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ESPDMAMemoryReadWriteFunc dma_memory_read;
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ESPDMAMemoryReadWriteFunc dma_memory_write;
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void *dma_opaque;
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void (*dma_cb)(ESPState *s);
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};
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#define ESP_TCLO 0x0
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#define ESP_TCMID 0x1
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#define ESP_FIFO 0x2
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#define ESP_CMD 0x3
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#define ESP_RSTAT 0x4
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#define ESP_WBUSID 0x4
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#define ESP_RINTR 0x5
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#define ESP_WSEL 0x5
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#define ESP_RSEQ 0x6
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#define ESP_WSYNTP 0x6
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#define ESP_RFLAGS 0x7
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#define ESP_WSYNO 0x7
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#define ESP_CFG1 0x8
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#define ESP_RRES1 0x9
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#define ESP_WCCF 0x9
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#define ESP_RRES2 0xa
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#define ESP_WTEST 0xa
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#define ESP_CFG2 0xb
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#define ESP_CFG3 0xc
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#define ESP_RES3 0xd
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#define ESP_TCHI 0xe
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#define ESP_RES4 0xf
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#define CMD_DMA 0x80
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#define CMD_CMD 0x7f
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#define CMD_NOP 0x00
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#define CMD_FLUSH 0x01
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#define CMD_RESET 0x02
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#define CMD_BUSRESET 0x03
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#define CMD_TI 0x10
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#define CMD_ICCS 0x11
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#define CMD_MSGACC 0x12
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#define CMD_PAD 0x18
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#define CMD_SATN 0x1a
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#define CMD_RSTATN 0x1b
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#define CMD_SEL 0x41
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#define CMD_SELATN 0x42
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#define CMD_SELATNS 0x43
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#define CMD_ENSEL 0x44
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#define CMD_DISSEL 0x45
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#define STAT_DO 0x00
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#define STAT_DI 0x01
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#define STAT_CD 0x02
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#define STAT_ST 0x03
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#define STAT_MO 0x06
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#define STAT_MI 0x07
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#define STAT_PIO_MASK 0x06
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#define STAT_TC 0x10
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#define STAT_PE 0x20
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#define STAT_GE 0x40
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#define STAT_INT 0x80
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#define BUSID_DID 0x07
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#define INTR_FC 0x08
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#define INTR_BS 0x10
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#define INTR_DC 0x20
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#define INTR_RST 0x80
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#define SEQ_0 0x0
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#define SEQ_CD 0x4
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#define CFG1_RESREPT 0x40
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#define TCHI_FAS100A 0x4
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#define TCHI_AM53C974 0x12
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void esp_dma_enable(ESPState *s, int irq, int level);
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void esp_request_cancelled(SCSIRequest *req);
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void esp_command_complete(SCSIRequest *req, uint32_t status, size_t resid);
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void esp_transfer_data(SCSIRequest *req, uint32_t len);
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void esp_hard_reset(ESPState *s);
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uint64_t esp_reg_read(ESPState *s, uint32_t saddr);
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void esp_reg_write(ESPState *s, uint32_t saddr, uint64_t val);
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extern const VMStateDescription vmstate_esp;
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#endif
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