4be746345f
Device models should access their block backends only through the block-backend.h API. Convert them, and drop direct includes of inappropriate headers. Just four uses of BlockDriverState are left: * The Xen paravirtual block device backend (xen_disk.c) opens images itself when set up via xenbus, bypassing blockdev.c. I figure it should go through qmp_blockdev_add() instead. * Device model "usb-storage" prompts for keys. No other device model does, and this one probably shouldn't do it, either. * ide_issue_trim_cb() uses bdrv_aio_discard() instead of blk_aio_discard() because it fishes its backend out of a BlockAIOCB, which has only the BlockDriverState. * PC87312State has an unused BlockDriverState[] member. The next two commits take care of the latter two. Signed-off-by: Markus Armbruster <armbru@redhat.com> Reviewed-by: Max Reitz <mreitz@redhat.com> Signed-off-by: Kevin Wolf <kwolf@redhat.com>
639 lines
19 KiB
C
639 lines
19 KiB
C
/*
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* QEMU IDE Emulation: microdrive (CF / PCMCIA)
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*
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* Copyright (c) 2003 Fabrice Bellard
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* Copyright (c) 2006 Openedhand Ltd.
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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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#include <hw/hw.h>
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#include <hw/i386/pc.h>
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#include <hw/pcmcia.h>
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#include "sysemu/block-backend.h"
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#include "sysemu/dma.h"
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#include <hw/ide/internal.h>
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#define TYPE_MICRODRIVE "microdrive"
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#define MICRODRIVE(obj) OBJECT_CHECK(MicroDriveState, (obj), TYPE_MICRODRIVE)
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/***********************************************************/
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/* CF-ATA Microdrive */
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#define METADATA_SIZE 0x20
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/* DSCM-1XXXX Microdrive hard disk with CF+ II / PCMCIA interface. */
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typedef struct MicroDriveState {
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/*< private >*/
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PCMCIACardState parent_obj;
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/*< public >*/
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IDEBus bus;
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uint32_t attr_base;
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uint32_t io_base;
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/* Card state */
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uint8_t opt;
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uint8_t stat;
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uint8_t pins;
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uint8_t ctrl;
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uint16_t io;
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uint8_t cycle;
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} MicroDriveState;
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/* Register bitfields */
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enum md_opt {
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OPT_MODE_MMAP = 0,
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OPT_MODE_IOMAP16 = 1,
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OPT_MODE_IOMAP1 = 2,
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OPT_MODE_IOMAP2 = 3,
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OPT_MODE = 0x3f,
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OPT_LEVIREQ = 0x40,
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OPT_SRESET = 0x80,
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};
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enum md_cstat {
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STAT_INT = 0x02,
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STAT_PWRDWN = 0x04,
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STAT_XE = 0x10,
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STAT_IOIS8 = 0x20,
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STAT_SIGCHG = 0x40,
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STAT_CHANGED = 0x80,
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};
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enum md_pins {
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PINS_MRDY = 0x02,
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PINS_CRDY = 0x20,
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};
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enum md_ctrl {
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CTRL_IEN = 0x02,
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CTRL_SRST = 0x04,
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};
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static inline void md_interrupt_update(MicroDriveState *s)
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{
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PCMCIACardState *card = PCMCIA_CARD(s);
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if (card->slot == NULL) {
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return;
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}
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qemu_set_irq(card->slot->irq,
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!(s->stat & STAT_INT) && /* Inverted */
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!(s->ctrl & (CTRL_IEN | CTRL_SRST)) &&
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!(s->opt & OPT_SRESET));
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}
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static void md_set_irq(void *opaque, int irq, int level)
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{
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MicroDriveState *s = opaque;
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if (level) {
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s->stat |= STAT_INT;
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} else {
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s->stat &= ~STAT_INT;
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}
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md_interrupt_update(s);
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}
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static void md_reset(DeviceState *dev)
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{
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MicroDriveState *s = MICRODRIVE(dev);
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s->opt = OPT_MODE_MMAP;
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s->stat = 0;
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s->pins = 0;
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s->cycle = 0;
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s->ctrl = 0;
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ide_bus_reset(&s->bus);
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}
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static uint8_t md_attr_read(PCMCIACardState *card, uint32_t at)
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{
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MicroDriveState *s = MICRODRIVE(card);
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PCMCIACardClass *pcc = PCMCIA_CARD_GET_CLASS(card);
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if (at < s->attr_base) {
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if (at < pcc->cis_len) {
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return pcc->cis[at];
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} else {
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return 0x00;
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}
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}
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at -= s->attr_base;
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switch (at) {
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case 0x00: /* Configuration Option Register */
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return s->opt;
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case 0x02: /* Card Configuration Status Register */
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if (s->ctrl & CTRL_IEN) {
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return s->stat & ~STAT_INT;
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} else {
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return s->stat;
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}
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case 0x04: /* Pin Replacement Register */
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return (s->pins & PINS_CRDY) | 0x0c;
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case 0x06: /* Socket and Copy Register */
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return 0x00;
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#ifdef VERBOSE
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default:
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printf("%s: Bad attribute space register %02x\n", __FUNCTION__, at);
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#endif
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}
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return 0;
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}
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static void md_attr_write(PCMCIACardState *card, uint32_t at, uint8_t value)
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{
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MicroDriveState *s = MICRODRIVE(card);
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at -= s->attr_base;
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switch (at) {
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case 0x00: /* Configuration Option Register */
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s->opt = value & 0xcf;
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if (value & OPT_SRESET) {
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device_reset(DEVICE(s));
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}
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md_interrupt_update(s);
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break;
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case 0x02: /* Card Configuration Status Register */
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if ((s->stat ^ value) & STAT_PWRDWN) {
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s->pins |= PINS_CRDY;
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}
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s->stat &= 0x82;
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s->stat |= value & 0x74;
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md_interrupt_update(s);
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/* Word 170 in Identify Device must be equal to STAT_XE */
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break;
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case 0x04: /* Pin Replacement Register */
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s->pins &= PINS_CRDY;
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s->pins |= value & PINS_MRDY;
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break;
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case 0x06: /* Socket and Copy Register */
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break;
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default:
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printf("%s: Bad attribute space register %02x\n", __FUNCTION__, at);
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}
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}
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static uint16_t md_common_read(PCMCIACardState *card, uint32_t at)
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{
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MicroDriveState *s = MICRODRIVE(card);
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IDEState *ifs;
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uint16_t ret;
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at -= s->io_base;
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switch (s->opt & OPT_MODE) {
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case OPT_MODE_MMAP:
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if ((at & ~0x3ff) == 0x400) {
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at = 0;
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}
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break;
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case OPT_MODE_IOMAP16:
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at &= 0xf;
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break;
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case OPT_MODE_IOMAP1:
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if ((at & ~0xf) == 0x3f0) {
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at -= 0x3e8;
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} else if ((at & ~0xf) == 0x1f0) {
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at -= 0x1f0;
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}
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break;
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case OPT_MODE_IOMAP2:
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if ((at & ~0xf) == 0x370) {
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at -= 0x368;
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} else if ((at & ~0xf) == 0x170) {
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at -= 0x170;
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}
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}
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switch (at) {
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case 0x0: /* Even RD Data */
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case 0x8:
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return ide_data_readw(&s->bus, 0);
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/* TODO: 8-bit accesses */
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if (s->cycle) {
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ret = s->io >> 8;
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} else {
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s->io = ide_data_readw(&s->bus, 0);
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ret = s->io & 0xff;
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}
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s->cycle = !s->cycle;
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return ret;
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case 0x9: /* Odd RD Data */
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return s->io >> 8;
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case 0xd: /* Error */
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return ide_ioport_read(&s->bus, 0x1);
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case 0xe: /* Alternate Status */
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ifs = idebus_active_if(&s->bus);
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if (ifs->blk) {
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return ifs->status;
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} else {
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return 0;
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}
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case 0xf: /* Device Address */
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ifs = idebus_active_if(&s->bus);
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return 0xc2 | ((~ifs->select << 2) & 0x3c);
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default:
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return ide_ioport_read(&s->bus, at);
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}
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return 0;
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}
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static void md_common_write(PCMCIACardState *card, uint32_t at, uint16_t value)
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{
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MicroDriveState *s = MICRODRIVE(card);
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at -= s->io_base;
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switch (s->opt & OPT_MODE) {
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case OPT_MODE_MMAP:
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if ((at & ~0x3ff) == 0x400) {
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at = 0;
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}
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break;
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case OPT_MODE_IOMAP16:
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at &= 0xf;
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break;
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case OPT_MODE_IOMAP1:
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if ((at & ~0xf) == 0x3f0) {
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at -= 0x3e8;
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} else if ((at & ~0xf) == 0x1f0) {
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at -= 0x1f0;
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}
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break;
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case OPT_MODE_IOMAP2:
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if ((at & ~0xf) == 0x370) {
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at -= 0x368;
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} else if ((at & ~0xf) == 0x170) {
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at -= 0x170;
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}
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}
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switch (at) {
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case 0x0: /* Even WR Data */
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case 0x8:
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ide_data_writew(&s->bus, 0, value);
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break;
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/* TODO: 8-bit accesses */
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if (s->cycle) {
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ide_data_writew(&s->bus, 0, s->io | (value << 8));
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} else {
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s->io = value & 0xff;
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}
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s->cycle = !s->cycle;
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break;
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case 0x9:
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s->io = value & 0xff;
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s->cycle = !s->cycle;
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break;
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case 0xd: /* Features */
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ide_ioport_write(&s->bus, 0x1, value);
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break;
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case 0xe: /* Device Control */
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s->ctrl = value;
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if (value & CTRL_SRST) {
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device_reset(DEVICE(s));
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}
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md_interrupt_update(s);
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break;
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default:
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if (s->stat & STAT_PWRDWN) {
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s->pins |= PINS_CRDY;
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s->stat &= ~STAT_PWRDWN;
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}
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ide_ioport_write(&s->bus, at, value);
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}
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}
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static const VMStateDescription vmstate_microdrive = {
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.name = "microdrive",
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.version_id = 3,
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.minimum_version_id = 0,
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.fields = (VMStateField[]) {
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VMSTATE_UINT8(opt, MicroDriveState),
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VMSTATE_UINT8(stat, MicroDriveState),
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VMSTATE_UINT8(pins, MicroDriveState),
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VMSTATE_UINT8(ctrl, MicroDriveState),
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VMSTATE_UINT16(io, MicroDriveState),
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VMSTATE_UINT8(cycle, MicroDriveState),
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VMSTATE_IDE_BUS(bus, MicroDriveState),
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VMSTATE_IDE_DRIVES(bus.ifs, MicroDriveState),
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VMSTATE_END_OF_LIST()
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}
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};
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static const uint8_t dscm1xxxx_cis[0x14a] = {
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[0x000] = CISTPL_DEVICE, /* 5V Device Information */
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[0x002] = 0x03, /* Tuple length = 4 bytes */
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[0x004] = 0xdb, /* ID: DTYPE_FUNCSPEC, non WP, DSPEED_150NS */
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[0x006] = 0x01, /* Size = 2K bytes */
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[0x008] = CISTPL_ENDMARK,
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[0x00a] = CISTPL_DEVICE_OC, /* Additional Device Information */
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[0x00c] = 0x04, /* Tuple length = 4 byest */
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[0x00e] = 0x03, /* Conditions: Ext = 0, Vcc 3.3V, MWAIT = 1 */
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[0x010] = 0xdb, /* ID: DTYPE_FUNCSPEC, non WP, DSPEED_150NS */
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[0x012] = 0x01, /* Size = 2K bytes */
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[0x014] = CISTPL_ENDMARK,
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[0x016] = CISTPL_JEDEC_C, /* JEDEC ID */
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[0x018] = 0x02, /* Tuple length = 2 bytes */
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[0x01a] = 0xdf, /* PC Card ATA with no Vpp required */
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[0x01c] = 0x01,
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[0x01e] = CISTPL_MANFID, /* Manufacture ID */
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[0x020] = 0x04, /* Tuple length = 4 bytes */
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[0x022] = 0xa4, /* TPLMID_MANF = 00a4 (IBM) */
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[0x024] = 0x00,
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[0x026] = 0x00, /* PLMID_CARD = 0000 */
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[0x028] = 0x00,
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[0x02a] = CISTPL_VERS_1, /* Level 1 Version */
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[0x02c] = 0x12, /* Tuple length = 23 bytes */
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[0x02e] = 0x04, /* Major Version = JEIDA 4.2 / PCMCIA 2.1 */
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[0x030] = 0x01, /* Minor Version = 1 */
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[0x032] = 'I',
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[0x034] = 'B',
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[0x036] = 'M',
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[0x038] = 0x00,
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[0x03a] = 'm',
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[0x03c] = 'i',
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[0x03e] = 'c',
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[0x040] = 'r',
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[0x042] = 'o',
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[0x044] = 'd',
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[0x046] = 'r',
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[0x048] = 'i',
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[0x04a] = 'v',
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[0x04c] = 'e',
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[0x04e] = 0x00,
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[0x050] = CISTPL_ENDMARK,
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[0x052] = CISTPL_FUNCID, /* Function ID */
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[0x054] = 0x02, /* Tuple length = 2 bytes */
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[0x056] = 0x04, /* TPLFID_FUNCTION = Fixed Disk */
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[0x058] = 0x01, /* TPLFID_SYSINIT: POST = 1, ROM = 0 */
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[0x05a] = CISTPL_FUNCE, /* Function Extension */
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[0x05c] = 0x02, /* Tuple length = 2 bytes */
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[0x05e] = 0x01, /* TPLFE_TYPE = Disk Device Interface */
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[0x060] = 0x01, /* TPLFE_DATA = PC Card ATA Interface */
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[0x062] = CISTPL_FUNCE, /* Function Extension */
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[0x064] = 0x03, /* Tuple length = 3 bytes */
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[0x066] = 0x02, /* TPLFE_TYPE = Basic PC Card ATA Interface */
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[0x068] = 0x08, /* TPLFE_DATA: Rotating, Unique, Single */
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[0x06a] = 0x0f, /* TPLFE_DATA: Sleep, Standby, Idle, Auto */
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[0x06c] = CISTPL_CONFIG, /* Configuration */
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[0x06e] = 0x05, /* Tuple length = 5 bytes */
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[0x070] = 0x01, /* TPCC_RASZ = 2 bytes, TPCC_RMSZ = 1 byte */
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[0x072] = 0x07, /* TPCC_LAST = 7 */
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[0x074] = 0x00, /* TPCC_RADR = 0200 */
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[0x076] = 0x02,
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[0x078] = 0x0f, /* TPCC_RMSK = 200, 202, 204, 206 */
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[0x07a] = CISTPL_CFTABLE_ENTRY, /* 16-bit PC Card Configuration */
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[0x07c] = 0x0b, /* Tuple length = 11 bytes */
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[0x07e] = 0xc0, /* TPCE_INDX = Memory Mode, Default, Iface */
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[0x080] = 0xc0, /* TPCE_IF = Memory, no BVDs, no WP, READY */
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[0x082] = 0xa1, /* TPCE_FS = Vcc only, no I/O, Memory, Misc */
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[0x084] = 0x27, /* NomV = 1, MinV = 1, MaxV = 1, Peakl = 1 */
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[0x086] = 0x55, /* NomV: 5.0 V */
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[0x088] = 0x4d, /* MinV: 4.5 V */
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[0x08a] = 0x5d, /* MaxV: 5.5 V */
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[0x08c] = 0x4e, /* Peakl: 450 mA */
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[0x08e] = 0x08, /* TPCE_MS = 1 window, 1 byte, Host address */
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[0x090] = 0x00, /* Window descriptor: Window length = 0 */
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[0x092] = 0x20, /* TPCE_MI: support power down mode, RW */
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[0x094] = CISTPL_CFTABLE_ENTRY, /* 16-bit PC Card Configuration */
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[0x096] = 0x06, /* Tuple length = 6 bytes */
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[0x098] = 0x00, /* TPCE_INDX = Memory Mode, no Default */
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[0x09a] = 0x01, /* TPCE_FS = Vcc only, no I/O, no Memory */
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[0x09c] = 0x21, /* NomV = 1, MinV = 0, MaxV = 0, Peakl = 1 */
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[0x09e] = 0xb5, /* NomV: 3.3 V */
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[0x0a0] = 0x1e,
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[0x0a2] = 0x3e, /* Peakl: 350 mA */
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[0x0a4] = CISTPL_CFTABLE_ENTRY, /* 16-bit PC Card Configuration */
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[0x0a6] = 0x0d, /* Tuple length = 13 bytes */
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[0x0a8] = 0xc1, /* TPCE_INDX = I/O and Memory Mode, Default */
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[0x0aa] = 0x41, /* TPCE_IF = I/O and Memory, no BVD, no WP */
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[0x0ac] = 0x99, /* TPCE_FS = Vcc only, I/O, Interrupt, Misc */
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[0x0ae] = 0x27, /* NomV = 1, MinV = 1, MaxV = 1, Peakl = 1 */
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[0x0b0] = 0x55, /* NomV: 5.0 V */
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[0x0b2] = 0x4d, /* MinV: 4.5 V */
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[0x0b4] = 0x5d, /* MaxV: 5.5 V */
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[0x0b6] = 0x4e, /* Peakl: 450 mA */
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[0x0b8] = 0x64, /* TPCE_IO = 16-byte boundary, 16/8 accesses */
|
|
[0x0ba] = 0xf0, /* TPCE_IR = MASK, Level, Pulse, Share */
|
|
[0x0bc] = 0xff, /* IRQ0..IRQ7 supported */
|
|
[0x0be] = 0xff, /* IRQ8..IRQ15 supported */
|
|
[0x0c0] = 0x20, /* TPCE_MI = support power down mode */
|
|
|
|
[0x0c2] = CISTPL_CFTABLE_ENTRY, /* 16-bit PC Card Configuration */
|
|
[0x0c4] = 0x06, /* Tuple length = 6 bytes */
|
|
[0x0c6] = 0x01, /* TPCE_INDX = I/O and Memory Mode */
|
|
[0x0c8] = 0x01, /* TPCE_FS = Vcc only, no I/O, no Memory */
|
|
[0x0ca] = 0x21, /* NomV = 1, MinV = 0, MaxV = 0, Peakl = 1 */
|
|
[0x0cc] = 0xb5, /* NomV: 3.3 V */
|
|
[0x0ce] = 0x1e,
|
|
[0x0d0] = 0x3e, /* Peakl: 350 mA */
|
|
|
|
[0x0d2] = CISTPL_CFTABLE_ENTRY, /* 16-bit PC Card Configuration */
|
|
[0x0d4] = 0x12, /* Tuple length = 18 bytes */
|
|
[0x0d6] = 0xc2, /* TPCE_INDX = I/O Primary Mode */
|
|
[0x0d8] = 0x41, /* TPCE_IF = I/O and Memory, no BVD, no WP */
|
|
[0x0da] = 0x99, /* TPCE_FS = Vcc only, I/O, Interrupt, Misc */
|
|
[0x0dc] = 0x27, /* NomV = 1, MinV = 1, MaxV = 1, Peakl = 1 */
|
|
[0x0de] = 0x55, /* NomV: 5.0 V */
|
|
[0x0e0] = 0x4d, /* MinV: 4.5 V */
|
|
[0x0e2] = 0x5d, /* MaxV: 5.5 V */
|
|
[0x0e4] = 0x4e, /* Peakl: 450 mA */
|
|
[0x0e6] = 0xea, /* TPCE_IO = 1K boundary, 16/8 access, Range */
|
|
[0x0e8] = 0x61, /* Range: 2 fields, 2 bytes addr, 1 byte len */
|
|
[0x0ea] = 0xf0, /* Field 1 address = 0x01f0 */
|
|
[0x0ec] = 0x01,
|
|
[0x0ee] = 0x07, /* Address block length = 8 */
|
|
[0x0f0] = 0xf6, /* Field 2 address = 0x03f6 */
|
|
[0x0f2] = 0x03,
|
|
[0x0f4] = 0x01, /* Address block length = 2 */
|
|
[0x0f6] = 0xee, /* TPCE_IR = IRQ E, Level, Pulse, Share */
|
|
[0x0f8] = 0x20, /* TPCE_MI = support power down mode */
|
|
|
|
[0x0fa] = CISTPL_CFTABLE_ENTRY, /* 16-bit PC Card Configuration */
|
|
[0x0fc] = 0x06, /* Tuple length = 6 bytes */
|
|
[0x0fe] = 0x02, /* TPCE_INDX = I/O Primary Mode, no Default */
|
|
[0x100] = 0x01, /* TPCE_FS = Vcc only, no I/O, no Memory */
|
|
[0x102] = 0x21, /* NomV = 1, MinV = 0, MaxV = 0, Peakl = 1 */
|
|
[0x104] = 0xb5, /* NomV: 3.3 V */
|
|
[0x106] = 0x1e,
|
|
[0x108] = 0x3e, /* Peakl: 350 mA */
|
|
|
|
[0x10a] = CISTPL_CFTABLE_ENTRY, /* 16-bit PC Card Configuration */
|
|
[0x10c] = 0x12, /* Tuple length = 18 bytes */
|
|
[0x10e] = 0xc3, /* TPCE_INDX = I/O Secondary Mode, Default */
|
|
[0x110] = 0x41, /* TPCE_IF = I/O and Memory, no BVD, no WP */
|
|
[0x112] = 0x99, /* TPCE_FS = Vcc only, I/O, Interrupt, Misc */
|
|
[0x114] = 0x27, /* NomV = 1, MinV = 1, MaxV = 1, Peakl = 1 */
|
|
[0x116] = 0x55, /* NomV: 5.0 V */
|
|
[0x118] = 0x4d, /* MinV: 4.5 V */
|
|
[0x11a] = 0x5d, /* MaxV: 5.5 V */
|
|
[0x11c] = 0x4e, /* Peakl: 450 mA */
|
|
[0x11e] = 0xea, /* TPCE_IO = 1K boundary, 16/8 access, Range */
|
|
[0x120] = 0x61, /* Range: 2 fields, 2 byte addr, 1 byte len */
|
|
[0x122] = 0x70, /* Field 1 address = 0x0170 */
|
|
[0x124] = 0x01,
|
|
[0x126] = 0x07, /* Address block length = 8 */
|
|
[0x128] = 0x76, /* Field 2 address = 0x0376 */
|
|
[0x12a] = 0x03,
|
|
[0x12c] = 0x01, /* Address block length = 2 */
|
|
[0x12e] = 0xee, /* TPCE_IR = IRQ E, Level, Pulse, Share */
|
|
[0x130] = 0x20, /* TPCE_MI = support power down mode */
|
|
|
|
[0x132] = CISTPL_CFTABLE_ENTRY, /* 16-bit PC Card Configuration */
|
|
[0x134] = 0x06, /* Tuple length = 6 bytes */
|
|
[0x136] = 0x03, /* TPCE_INDX = I/O Secondary Mode */
|
|
[0x138] = 0x01, /* TPCE_FS = Vcc only, no I/O, no Memory */
|
|
[0x13a] = 0x21, /* NomV = 1, MinV = 0, MaxV = 0, Peakl = 1 */
|
|
[0x13c] = 0xb5, /* NomV: 3.3 V */
|
|
[0x13e] = 0x1e,
|
|
[0x140] = 0x3e, /* Peakl: 350 mA */
|
|
|
|
[0x142] = CISTPL_NO_LINK, /* No Link */
|
|
[0x144] = 0x00, /* Tuple length = 0 bytes */
|
|
|
|
[0x146] = CISTPL_END, /* Tuple End */
|
|
};
|
|
|
|
#define TYPE_DSCM1XXXX "dscm1xxxx"
|
|
|
|
static int dscm1xxxx_attach(PCMCIACardState *card)
|
|
{
|
|
MicroDriveState *md = MICRODRIVE(card);
|
|
PCMCIACardClass *pcc = PCMCIA_CARD_GET_CLASS(card);
|
|
|
|
md->attr_base = pcc->cis[0x74] | (pcc->cis[0x76] << 8);
|
|
md->io_base = 0x0;
|
|
|
|
device_reset(DEVICE(md));
|
|
md_interrupt_update(md);
|
|
|
|
card->slot->card_string = "DSCM-1xxxx Hitachi Microdrive";
|
|
return 0;
|
|
}
|
|
|
|
static int dscm1xxxx_detach(PCMCIACardState *card)
|
|
{
|
|
MicroDriveState *md = MICRODRIVE(card);
|
|
|
|
device_reset(DEVICE(md));
|
|
return 0;
|
|
}
|
|
|
|
PCMCIACardState *dscm1xxxx_init(DriveInfo *dinfo)
|
|
{
|
|
MicroDriveState *md;
|
|
|
|
md = MICRODRIVE(object_new(TYPE_DSCM1XXXX));
|
|
qdev_init_nofail(DEVICE(md));
|
|
|
|
if (dinfo != NULL) {
|
|
ide_create_drive(&md->bus, 0, dinfo);
|
|
}
|
|
md->bus.ifs[0].drive_kind = IDE_CFATA;
|
|
md->bus.ifs[0].mdata_size = METADATA_SIZE;
|
|
md->bus.ifs[0].mdata_storage = g_malloc0(METADATA_SIZE);
|
|
|
|
return PCMCIA_CARD(md);
|
|
}
|
|
|
|
static void dscm1xxxx_class_init(ObjectClass *oc, void *data)
|
|
{
|
|
PCMCIACardClass *pcc = PCMCIA_CARD_CLASS(oc);
|
|
|
|
pcc->cis = dscm1xxxx_cis;
|
|
pcc->cis_len = sizeof(dscm1xxxx_cis);
|
|
|
|
pcc->attach = dscm1xxxx_attach;
|
|
pcc->detach = dscm1xxxx_detach;
|
|
}
|
|
|
|
static const TypeInfo dscm1xxxx_type_info = {
|
|
.name = TYPE_DSCM1XXXX,
|
|
.parent = TYPE_MICRODRIVE,
|
|
.class_init = dscm1xxxx_class_init,
|
|
};
|
|
|
|
static void microdrive_realize(DeviceState *dev, Error **errp)
|
|
{
|
|
MicroDriveState *md = MICRODRIVE(dev);
|
|
|
|
ide_init2(&md->bus, qemu_allocate_irq(md_set_irq, md, 0));
|
|
}
|
|
|
|
static void microdrive_init(Object *obj)
|
|
{
|
|
MicroDriveState *md = MICRODRIVE(obj);
|
|
|
|
ide_bus_new(&md->bus, sizeof(md->bus), DEVICE(obj), 0, 1);
|
|
}
|
|
|
|
static void microdrive_class_init(ObjectClass *oc, void *data)
|
|
{
|
|
DeviceClass *dc = DEVICE_CLASS(oc);
|
|
PCMCIACardClass *pcc = PCMCIA_CARD_CLASS(oc);
|
|
|
|
pcc->attr_read = md_attr_read;
|
|
pcc->attr_write = md_attr_write;
|
|
pcc->common_read = md_common_read;
|
|
pcc->common_write = md_common_write;
|
|
pcc->io_read = md_common_read;
|
|
pcc->io_write = md_common_write;
|
|
|
|
dc->realize = microdrive_realize;
|
|
dc->reset = md_reset;
|
|
dc->vmsd = &vmstate_microdrive;
|
|
}
|
|
|
|
static const TypeInfo microdrive_type_info = {
|
|
.name = TYPE_MICRODRIVE,
|
|
.parent = TYPE_PCMCIA_CARD,
|
|
.instance_size = sizeof(MicroDriveState),
|
|
.instance_init = microdrive_init,
|
|
.abstract = true,
|
|
.class_init = microdrive_class_init,
|
|
};
|
|
|
|
static void microdrive_register_types(void)
|
|
{
|
|
type_register_static(µdrive_type_info);
|
|
type_register_static(&dscm1xxxx_type_info);
|
|
}
|
|
|
|
type_init(microdrive_register_types)
|