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https://github.com/AuxXxilium/linux_dsm_epyc7002.git
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9bf70717a5
It turns out that pci core now handles these, so this code is redundant and can even cause bugs Signed-off-by: Maxim Levitsky <maximlevitsky@gmail.com> Signed-off-by: David Woodhouse <David.Woodhouse@intel.com>
162 lines
5.2 KiB
C
162 lines
5.2 KiB
C
/*
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* Copyright © 2009 - Maxim Levitsky
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* driver for Ricoh xD readers
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 as
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* published by the Free Software Foundation.
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*/
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#include <linux/pci.h>
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#include <linux/completion.h>
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#include <linux/workqueue.h>
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#include <linux/mtd/nand.h>
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#include <linux/spinlock.h>
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/* nand interface + ecc
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byte write/read does one cycle on nand data lines.
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dword write/read does 4 cycles
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if R852_CTL_ECC_ACCESS is set in R852_CTL, then dword read reads
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results of ecc correction, if DMA read was done before.
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If write was done two dword reads read generated ecc checksums
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*/
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#define R852_DATALINE 0x00
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/* control register */
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#define R852_CTL 0x04
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#define R852_CTL_COMMAND 0x01 /* send command (#CLE)*/
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#define R852_CTL_DATA 0x02 /* read/write data (#ALE)*/
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#define R852_CTL_ON 0x04 /* only seem to controls the hd led, */
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/* but has to be set on start...*/
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#define R852_CTL_RESET 0x08 /* unknown, set only on start once*/
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#define R852_CTL_CARDENABLE 0x10 /* probably (#CE) - always set*/
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#define R852_CTL_ECC_ENABLE 0x20 /* enable ecc engine */
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#define R852_CTL_ECC_ACCESS 0x40 /* read/write ecc via reg #0*/
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#define R852_CTL_WRITE 0x80 /* set when performing writes (#WP) */
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/* card detection status */
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#define R852_CARD_STA 0x05
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#define R852_CARD_STA_CD 0x01 /* state of #CD line, same as 0x04 */
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#define R852_CARD_STA_RO 0x02 /* card is readonly */
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#define R852_CARD_STA_PRESENT 0x04 /* card is present (#CD) */
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#define R852_CARD_STA_ABSENT 0x08 /* card is absent */
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#define R852_CARD_STA_BUSY 0x80 /* card is busy - (#R/B) */
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/* card detection irq status & enable*/
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#define R852_CARD_IRQ_STA 0x06 /* IRQ status */
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#define R852_CARD_IRQ_ENABLE 0x07 /* IRQ enable */
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#define R852_CARD_IRQ_CD 0x01 /* fire when #CD lights, same as 0x04*/
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#define R852_CARD_IRQ_REMOVE 0x04 /* detect card removal */
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#define R852_CARD_IRQ_INSERT 0x08 /* detect card insert */
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#define R852_CARD_IRQ_UNK1 0x10 /* unknown */
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#define R852_CARD_IRQ_GENABLE 0x80 /* general enable */
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#define R852_CARD_IRQ_MASK 0x1D
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/* hardware enable */
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#define R852_HW 0x08
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#define R852_HW_ENABLED 0x01 /* hw enabled */
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#define R852_HW_UNKNOWN 0x80
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/* dma capabilities */
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#define R852_DMA_CAP 0x09
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#define R852_SMBIT 0x20 /* if set with bit #6 or bit #7, then */
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/* hw is smartmedia */
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#define R852_DMA1 0x40 /* if set w/bit #7, dma is supported */
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#define R852_DMA2 0x80 /* if set w/bit #6, dma is supported */
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/* physical DMA address - 32 bit value*/
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#define R852_DMA_ADDR 0x0C
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/* dma settings */
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#define R852_DMA_SETTINGS 0x10
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#define R852_DMA_MEMORY 0x01 /* (memory <-> internal hw buffer) */
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#define R852_DMA_READ 0x02 /* 0 = write, 1 = read */
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#define R852_DMA_INTERNAL 0x04 /* (internal hw buffer <-> card) */
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/* dma IRQ status */
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#define R852_DMA_IRQ_STA 0x14
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/* dma IRQ enable */
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#define R852_DMA_IRQ_ENABLE 0x18
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#define R852_DMA_IRQ_MEMORY 0x01 /* (memory <-> internal hw buffer) */
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#define R852_DMA_IRQ_ERROR 0x02 /* error did happen */
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#define R852_DMA_IRQ_INTERNAL 0x04 /* (internal hw buffer <-> card) */
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#define R852_DMA_IRQ_MASK 0x07 /* mask of all IRQ bits */
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/* ECC syndrome format - read from reg #0 will return two copies of these for
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each half of the page.
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first byte is error byte location, and second, bit location + flags */
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#define R852_ECC_ERR_BIT_MSK 0x07 /* error bit location */
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#define R852_ECC_CORRECT 0x10 /* no errors - (guessed) */
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#define R852_ECC_CORRECTABLE 0x20 /* correctable error exist */
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#define R852_ECC_FAIL 0x40 /* non correctable error detected */
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#define R852_DMA_LEN 512
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#define DMA_INTERNAL 0
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#define DMA_MEMORY 1
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struct r852_device {
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void __iomem *mmio; /* mmio */
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struct mtd_info *mtd; /* mtd backpointer */
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struct nand_chip *chip; /* nand chip backpointer */
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struct pci_dev *pci_dev; /* pci backpointer */
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/* dma area */
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dma_addr_t phys_dma_addr; /* bus address of buffer*/
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struct completion dma_done; /* data transfer done */
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dma_addr_t phys_bounce_buffer; /* bus address of bounce buffer */
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uint8_t *bounce_buffer; /* virtual address of bounce buffer */
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int dma_dir; /* 1 = read, 0 = write */
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int dma_stage; /* 0 - idle, 1 - first step,
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2 - second step */
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int dma_state; /* 0 = internal, 1 = memory */
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int dma_error; /* dma errors */
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int dma_usable; /* is it possible to use dma */
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/* card status area */
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struct delayed_work card_detect_work;
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struct workqueue_struct *card_workqueue;
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int card_registred; /* card registered with mtd */
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int card_detected; /* card detected in slot */
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int card_unstable; /* whenever the card is inserted,
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is not known yet */
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int readonly; /* card is readonly */
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int sm; /* Is card smartmedia */
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/* interrupt handling */
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spinlock_t irqlock; /* IRQ protecting lock */
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int irq; /* irq num */
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/* misc */
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void *tmp_buffer; /* temporary buffer */
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uint8_t ctlreg; /* cached contents of control reg */
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};
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#define DRV_NAME "r852"
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#define dbg(format, ...) \
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if (debug) \
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printk(KERN_DEBUG DRV_NAME ": " format "\n", ## __VA_ARGS__)
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#define dbg_verbose(format, ...) \
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if (debug > 1) \
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printk(KERN_DEBUG DRV_NAME ": " format "\n", ## __VA_ARGS__)
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#define message(format, ...) \
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printk(KERN_INFO DRV_NAME ": " format "\n", ## __VA_ARGS__)
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