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1
/*
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 * QEMU IDE disk and CD-ROM Emulator
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 * 
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 * Copyright (c) 2003 Fabrice Bellard
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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 <stdlib.h>
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#include <stdio.h>
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#include <stdarg.h>
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#include <string.h>
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#include <getopt.h>
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#include <inttypes.h>
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#include <unistd.h>
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#include <sys/mman.h>
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#include <fcntl.h>
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#include <signal.h>
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#include <time.h>
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#include <sys/time.h>
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#include <malloc.h>
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#include <termios.h>
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#include <sys/poll.h>
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#include <errno.h>
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#include <sys/wait.h>
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#include <netinet/in.h>
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#define NO_THUNK_TYPE_SIZE
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#include "thunk.h"
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#include "cpu.h"
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#include "exec-all.h"
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#include "vl.h"
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/* debug IDE devices */
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//#define DEBUG_IDE
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//#define DEBUG_IDE_ATAPI
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/* Bits of HD_STATUS */
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#define ERR_STAT                0x01
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#define INDEX_STAT                0x02
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#define ECC_STAT                0x04        /* Corrected error */
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#define DRQ_STAT                0x08
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#define SEEK_STAT                0x10
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#define SRV_STAT                0x10
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#define WRERR_STAT                0x20
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#define READY_STAT                0x40
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#define BUSY_STAT                0x80
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/* Bits for HD_ERROR */
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#define MARK_ERR                0x01        /* Bad address mark */
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#define TRK0_ERR                0x02        /* couldn't find track 0 */
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#define ABRT_ERR                0x04        /* Command aborted */
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#define MCR_ERR                        0x08        /* media change request */
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#define ID_ERR                        0x10        /* ID field not found */
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#define MC_ERR                        0x20        /* media changed */
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#define ECC_ERR                        0x40        /* Uncorrectable ECC error */
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#define BBD_ERR                        0x80        /* pre-EIDE meaning:  block marked bad */
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#define ICRC_ERR                0x80        /* new meaning:  CRC error during transfer */
76

    
77
/* Bits of HD_NSECTOR */
78
#define CD                        0x01
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#define IO                        0x02
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#define REL                        0x04
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#define TAG_MASK                0xf8
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#define IDE_CMD_RESET           0x04
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#define IDE_CMD_DISABLE_IRQ     0x02
85

    
86
/* ATA/ATAPI Commands pre T13 Spec */
87
#define WIN_NOP                                0x00
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/*
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 *        0x01->0x02 Reserved
90
 */
91
#define CFA_REQ_EXT_ERROR_CODE                0x03 /* CFA Request Extended Error Code */
92
/*
93
 *        0x04->0x07 Reserved
94
 */
95
#define WIN_SRST                        0x08 /* ATAPI soft reset command */
96
#define WIN_DEVICE_RESET                0x08
97
/*
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 *        0x09->0x0F Reserved
99
 */
100
#define WIN_RECAL                        0x10
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#define WIN_RESTORE                        WIN_RECAL
102
/*
103
 *        0x10->0x1F Reserved
104
 */
105
#define WIN_READ                        0x20 /* 28-Bit */
106
#define WIN_READ_ONCE                        0x21 /* 28-Bit without retries */
107
#define WIN_READ_LONG                        0x22 /* 28-Bit */
108
#define WIN_READ_LONG_ONCE                0x23 /* 28-Bit without retries */
109
#define WIN_READ_EXT                        0x24 /* 48-Bit */
110
#define WIN_READDMA_EXT                        0x25 /* 48-Bit */
111
#define WIN_READDMA_QUEUED_EXT                0x26 /* 48-Bit */
112
#define WIN_READ_NATIVE_MAX_EXT                0x27 /* 48-Bit */
113
/*
114
 *        0x28
115
 */
116
#define WIN_MULTREAD_EXT                0x29 /* 48-Bit */
117
/*
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 *        0x2A->0x2F Reserved
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 */
120
#define WIN_WRITE                        0x30 /* 28-Bit */
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#define WIN_WRITE_ONCE                        0x31 /* 28-Bit without retries */
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#define WIN_WRITE_LONG                        0x32 /* 28-Bit */
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#define WIN_WRITE_LONG_ONCE                0x33 /* 28-Bit without retries */
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#define WIN_WRITE_EXT                        0x34 /* 48-Bit */
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#define WIN_WRITEDMA_EXT                0x35 /* 48-Bit */
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#define WIN_WRITEDMA_QUEUED_EXT                0x36 /* 48-Bit */
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#define WIN_SET_MAX_EXT                        0x37 /* 48-Bit */
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#define CFA_WRITE_SECT_WO_ERASE                0x38 /* CFA Write Sectors without erase */
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#define WIN_MULTWRITE_EXT                0x39 /* 48-Bit */
130
/*
131
 *        0x3A->0x3B Reserved
132
 */
133
#define WIN_WRITE_VERIFY                0x3C /* 28-Bit */
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/*
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 *        0x3D->0x3F Reserved
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 */
137
#define WIN_VERIFY                        0x40 /* 28-Bit - Read Verify Sectors */
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#define WIN_VERIFY_ONCE                        0x41 /* 28-Bit - without retries */
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#define WIN_VERIFY_EXT                        0x42 /* 48-Bit */
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/*
141
 *        0x43->0x4F Reserved
142
 */
143
#define WIN_FORMAT                        0x50
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/*
145
 *        0x51->0x5F Reserved
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 */
147
#define WIN_INIT                        0x60
148
/*
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 *        0x61->0x5F Reserved
150
 */
151
#define WIN_SEEK                        0x70 /* 0x70-0x7F Reserved */
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#define CFA_TRANSLATE_SECTOR                0x87 /* CFA Translate Sector */
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#define WIN_DIAGNOSE                        0x90
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#define WIN_SPECIFY                        0x91 /* set drive geometry translation */
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#define WIN_DOWNLOAD_MICROCODE                0x92
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#define WIN_STANDBYNOW2                        0x94
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#define WIN_STANDBY2                        0x96
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#define WIN_SETIDLE2                        0x97
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#define WIN_CHECKPOWERMODE2                0x98
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#define WIN_SLEEPNOW2                        0x99
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/*
162
 *        0x9A VENDOR
163
 */
164
#define WIN_PACKETCMD                        0xA0 /* Send a packet command. */
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#define WIN_PIDENTIFY                        0xA1 /* identify ATAPI device        */
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#define WIN_QUEUED_SERVICE                0xA2
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#define WIN_SMART                        0xB0 /* self-monitoring and reporting */
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#define CFA_ERASE_SECTORS               0xC0
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#define WIN_MULTREAD                        0xC4 /* read sectors using multiple mode*/
170
#define WIN_MULTWRITE                        0xC5 /* write sectors using multiple mode */
171
#define WIN_SETMULT                        0xC6 /* enable/disable multiple mode */
172
#define WIN_READDMA_QUEUED                0xC7 /* read sectors using Queued DMA transfers */
173
#define WIN_READDMA                        0xC8 /* read sectors using DMA transfers */
174
#define WIN_READDMA_ONCE                0xC9 /* 28-Bit - without retries */
175
#define WIN_WRITEDMA                        0xCA /* write sectors using DMA transfers */
176
#define WIN_WRITEDMA_ONCE                0xCB /* 28-Bit - without retries */
177
#define WIN_WRITEDMA_QUEUED                0xCC /* write sectors using Queued DMA transfers */
178
#define CFA_WRITE_MULTI_WO_ERASE        0xCD /* CFA Write multiple without erase */
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#define WIN_GETMEDIASTATUS                0xDA        
180
#define WIN_ACKMEDIACHANGE                0xDB /* ATA-1, ATA-2 vendor */
181
#define WIN_POSTBOOT                        0xDC
182
#define WIN_PREBOOT                        0xDD
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#define WIN_DOORLOCK                        0xDE /* lock door on removable drives */
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#define WIN_DOORUNLOCK                        0xDF /* unlock door on removable drives */
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#define WIN_STANDBYNOW1                        0xE0
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#define WIN_IDLEIMMEDIATE                0xE1 /* force drive to become "ready" */
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#define WIN_STANDBY                     0xE2 /* Set device in Standby Mode */
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#define WIN_SETIDLE1                        0xE3
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#define WIN_READ_BUFFER                        0xE4 /* force read only 1 sector */
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#define WIN_CHECKPOWERMODE1                0xE5
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#define WIN_SLEEPNOW1                        0xE6
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#define WIN_FLUSH_CACHE                        0xE7
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#define WIN_WRITE_BUFFER                0xE8 /* force write only 1 sector */
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#define WIN_WRITE_SAME                        0xE9 /* read ata-2 to use */
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        /* SET_FEATURES 0x22 or 0xDD */
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#define WIN_FLUSH_CACHE_EXT                0xEA /* 48-Bit */
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#define WIN_IDENTIFY                        0xEC /* ask drive to identify itself        */
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#define WIN_MEDIAEJECT                        0xED
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#define WIN_IDENTIFY_DMA                0xEE /* same as WIN_IDENTIFY, but DMA */
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#define WIN_SETFEATURES                        0xEF /* set special drive features */
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#define EXABYTE_ENABLE_NEST                0xF0
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#define WIN_SECURITY_SET_PASS                0xF1
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#define WIN_SECURITY_UNLOCK                0xF2
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#define WIN_SECURITY_ERASE_PREPARE        0xF3
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#define WIN_SECURITY_ERASE_UNIT                0xF4
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#define WIN_SECURITY_FREEZE_LOCK        0xF5
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#define WIN_SECURITY_DISABLE                0xF6
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#define WIN_READ_NATIVE_MAX                0xF8 /* return the native maximum address */
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#define WIN_SET_MAX                        0xF9
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#define DISABLE_SEAGATE                        0xFB
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/* set to 1 set disable mult support */
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#define MAX_MULT_SECTORS 8
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/* ATAPI defines */
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#define ATAPI_PACKET_SIZE 12
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/* The generic packet command opcodes for CD/DVD Logical Units,
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 * From Table 57 of the SFF8090 Ver. 3 (Mt. Fuji) draft standard. */
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#define GPCMD_BLANK                            0xa1
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#define GPCMD_CLOSE_TRACK                    0x5b
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#define GPCMD_FLUSH_CACHE                    0x35
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#define GPCMD_FORMAT_UNIT                    0x04
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#define GPCMD_GET_CONFIGURATION                    0x46
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#define GPCMD_GET_EVENT_STATUS_NOTIFICATION 0x4a
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#define GPCMD_GET_PERFORMANCE                    0xac
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#define GPCMD_INQUIRY                            0x12
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#define GPCMD_LOAD_UNLOAD                    0xa6
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#define GPCMD_MECHANISM_STATUS                    0xbd
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#define GPCMD_MODE_SELECT_10                    0x55
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#define GPCMD_MODE_SENSE_10                    0x5a
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#define GPCMD_PAUSE_RESUME                    0x4b
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#define GPCMD_PLAY_AUDIO_10                    0x45
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#define GPCMD_PLAY_AUDIO_MSF                    0x47
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#define GPCMD_PLAY_AUDIO_TI                    0x48
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#define GPCMD_PLAY_CD                            0xbc
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#define GPCMD_PREVENT_ALLOW_MEDIUM_REMOVAL  0x1e
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#define GPCMD_READ_10                            0x28
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#define GPCMD_READ_12                            0xa8
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#define GPCMD_READ_CDVD_CAPACITY            0x25
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#define GPCMD_READ_CD                            0xbe
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#define GPCMD_READ_CD_MSF                    0xb9
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#define GPCMD_READ_DISC_INFO                    0x51
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#define GPCMD_READ_DVD_STRUCTURE            0xad
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#define GPCMD_READ_FORMAT_CAPACITIES            0x23
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#define GPCMD_READ_HEADER                    0x44
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#define GPCMD_READ_TRACK_RZONE_INFO            0x52
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#define GPCMD_READ_SUBCHANNEL                    0x42
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#define GPCMD_READ_TOC_PMA_ATIP                    0x43
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#define GPCMD_REPAIR_RZONE_TRACK            0x58
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#define GPCMD_REPORT_KEY                    0xa4
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#define GPCMD_REQUEST_SENSE                    0x03
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#define GPCMD_RESERVE_RZONE_TRACK            0x53
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#define GPCMD_SCAN                            0xba
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#define GPCMD_SEEK                            0x2b
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#define GPCMD_SEND_DVD_STRUCTURE            0xad
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#define GPCMD_SEND_EVENT                    0xa2
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#define GPCMD_SEND_KEY                            0xa3
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#define GPCMD_SEND_OPC                            0x54
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#define GPCMD_SET_READ_AHEAD                    0xa7
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#define GPCMD_SET_STREAMING                    0xb6
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#define GPCMD_START_STOP_UNIT                    0x1b
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#define GPCMD_STOP_PLAY_SCAN                    0x4e
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#define GPCMD_TEST_UNIT_READY                    0x00
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#define GPCMD_VERIFY_10                            0x2f
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#define GPCMD_WRITE_10                            0x2a
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#define GPCMD_WRITE_AND_VERIFY_10            0x2e
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/* This is listed as optional in ATAPI 2.6, but is (curiously) 
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 * missing from Mt. Fuji, Table 57.  It _is_ mentioned in Mt. Fuji
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 * Table 377 as an MMC command for SCSi devices though...  Most ATAPI
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 * drives support it. */
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#define GPCMD_SET_SPEED                            0xbb
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/* This seems to be a SCSI specific CD-ROM opcode 
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 * to play data at track/index */
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#define GPCMD_PLAYAUDIO_TI                    0x48
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/*
278
 * From MS Media Status Notification Support Specification. For
279
 * older drives only.
280
 */
281
#define GPCMD_GET_MEDIA_STATUS                    0xda
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/* Mode page codes for mode sense/set */
284
#define GPMODE_R_W_ERROR_PAGE                0x01
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#define GPMODE_WRITE_PARMS_PAGE                0x05
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#define GPMODE_AUDIO_CTL_PAGE                0x0e
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#define GPMODE_POWER_PAGE                0x1a
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#define GPMODE_FAULT_FAIL_PAGE                0x1c
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#define GPMODE_TO_PROTECT_PAGE                0x1d
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#define GPMODE_CAPABILITIES_PAGE        0x2a
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#define GPMODE_ALL_PAGES                0x3f
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/* Not in Mt. Fuji, but in ATAPI 2.6 -- depricated now in favor
293
 * of MODE_SENSE_POWER_PAGE */
294
#define GPMODE_CDROM_PAGE                0x0d
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#define ATAPI_INT_REASON_CD             0x01 /* 0 = data transfer */
297
#define ATAPI_INT_REASON_IO             0x02 /* 1 = transfer to the host */
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#define ATAPI_INT_REASON_REL            0x04
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#define ATAPI_INT_REASON_TAG            0xf8
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/* same constants as bochs */
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#define ASC_LOGICAL_BLOCK_OOR                0x21
303
#define ASC_INV_FIELD_IN_CMD_PACKET          0x24
304
#define ASC_MEDIUM_NOT_PRESENT               0x3a
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#define ASC_SAVING_PARAMETERS_NOT_SUPPORTED  0x39
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307
#define SENSE_NONE            0
308
#define SENSE_NOT_READY       2
309
#define SENSE_ILLEGAL_REQUEST 5
310
#define SENSE_UNIT_ATTENTION  6
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312
struct IDEState;
313

    
314
typedef void EndTransferFunc(struct IDEState *);
315

    
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typedef struct IDEState {
317
    /* ide config */
318
    int is_cdrom;
319
    int cdrom_locked;
320
    int cylinders, heads, sectors;
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    int64_t nb_sectors;
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    int mult_sectors;
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    int irq;
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    /* ide regs */
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    uint8_t feature;
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    uint8_t error;
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    uint16_t nsector; /* 0 is 256 to ease computations */
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    uint8_t sector;
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    uint8_t lcyl;
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    uint8_t hcyl;
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    uint8_t select;
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    uint8_t status;
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    /* 0x3f6 command, only meaningful for drive 0 */
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    uint8_t cmd;
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    /* depends on bit 4 in select, only meaningful for drive 0 */
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    struct IDEState *cur_drive; 
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    BlockDriverState *bs;
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    /* ATAPI specific */
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    uint8_t sense_key;
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    uint8_t asc;
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    int packet_transfer_size;
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    int elementary_transfer_size;
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    int io_buffer_index;
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    int lba;
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    /* transfer handling */
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    int req_nb_sectors; /* number of sectors per interrupt */
347
    EndTransferFunc *end_transfer_func;
348
    uint8_t *data_ptr;
349
    uint8_t *data_end;
350
    uint8_t io_buffer[MAX_MULT_SECTORS*512 + 4];
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} IDEState;
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IDEState ide_state[MAX_DISKS];
354
IDEState *ide_table[0x400 >> 3];
355

    
356
static inline IDEState *get_ide_interface(uint32_t addr)
357
{
358
    return ide_table[addr >> 3];
359
}
360

    
361
static void padstr(char *str, const char *src, int len)
362
{
363
    int i, v;
364
    for(i = 0; i < len; i++) {
365
        if (*src)
366
            v = *src++;
367
        else
368
            v = ' ';
369
        *(char *)((long)str ^ 1) = v;
370
        str++;
371
    }
372
}
373

    
374
static void padstr8(uint8_t *buf, int buf_size, const char *src)
375
{
376
    int i;
377
    for(i = 0; i < buf_size; i++) {
378
        if (*src)
379
            buf[i] = *src++;
380
        else
381
            buf[i] = ' ';
382
    }
383
}
384

    
385
static void ide_identify(IDEState *s)
386
{
387
    uint16_t *p;
388
    unsigned int oldsize;
389

    
390
    memset(s->io_buffer, 0, 512);
391
    p = (uint16_t *)s->io_buffer;
392
    stw_raw(p + 0, 0x0040);
393
    stw_raw(p + 1, s->cylinders); 
394
    stw_raw(p + 3, s->heads);
395
    stw_raw(p + 4, 512 * s->sectors); /* sectors */
396
    stw_raw(p + 5, 512); /* sector size */
397
    stw_raw(p + 6, s->sectors); 
398
    padstr((uint8_t *)(p + 10), "QM00001", 20); /* serial number */
399
    stw_raw(p + 20, 3); /* buffer type */
400
    stw_raw(p + 21, 512); /* cache size in sectors */
401
    stw_raw(p + 22, 4); /* ecc bytes */
402
    padstr((uint8_t *)(p + 23), QEMU_VERSION, 8); /* firmware version */
403
    padstr((uint8_t *)(p + 27), "QEMU HARDDISK", 40); /* model */
404
#if MAX_MULT_SECTORS > 1    
405
    stw_raw(p + 47, MAX_MULT_SECTORS);
406
#endif
407
    stw_raw(p + 48, 1); /* dword I/O */
408
    stw_raw(p + 49, 1 << 9); /* LBA supported, no DMA */
409
    stw_raw(p + 51, 0x200); /* PIO transfer cycle */
410
    stw_raw(p + 52, 0x200); /* DMA transfer cycle */
411
    stw_raw(p + 54, s->cylinders);
412
    stw_raw(p + 55, s->heads);
413
    stw_raw(p + 56, s->sectors);
414
    oldsize = s->cylinders * s->heads * s->sectors;
415
    stw_raw(p + 57, oldsize);
416
    stw_raw(p + 58, oldsize >> 16);
417
    if (s->mult_sectors)
418
        stw_raw(p + 59, 0x100 | s->mult_sectors);
419
    stw_raw(p + 60, s->nb_sectors);
420
    stw_raw(p + 61, s->nb_sectors >> 16);
421
    stw_raw(p + 80, (1 << 1) | (1 << 2));
422
    stw_raw(p + 82, (1 << 14));
423
    stw_raw(p + 83, (1 << 14));
424
    stw_raw(p + 84, (1 << 14));
425
    stw_raw(p + 85, (1 << 14));
426
    stw_raw(p + 86, 0);
427
    stw_raw(p + 87, (1 << 14));
428
}
429

    
430
static void ide_atapi_identify(IDEState *s)
431
{
432
    uint16_t *p;
433

    
434
    memset(s->io_buffer, 0, 512);
435
    p = (uint16_t *)s->io_buffer;
436
    /* Removable CDROM, 50us response, 12 byte packets */
437
    stw_raw(p + 0, (2 << 14) | (5 << 8) | (1 << 7) | (2 << 5) | (0 << 0));
438
    stw_raw(p + 1, s->cylinders); 
439
    stw_raw(p + 3, s->heads);
440
    stw_raw(p + 4, 512 * s->sectors); /* sectors */
441
    stw_raw(p + 5, 512); /* sector size */
442
    stw_raw(p + 6, s->sectors); 
443
    padstr((uint8_t *)(p + 10), "QM00001", 20); /* serial number */
444
    stw_raw(p + 20, 3); /* buffer type */
445
    stw_raw(p + 21, 512); /* cache size in sectors */
446
    stw_raw(p + 22, 4); /* ecc bytes */
447
    padstr((uint8_t *)(p + 23), QEMU_VERSION, 8); /* firmware version */
448
    padstr((uint8_t *)(p + 27), "QEMU CD-ROM", 40); /* model */
449
    stw_raw(p + 48, 1); /* dword I/O (XXX: should not be set on CDROM) */
450
    stw_raw(p + 49, 1 << 9); /* LBA supported, no DMA */
451
    stw_raw(p + 53, 3); /* words 64-70, 54-58 valid */
452
    stw_raw(p + 63, 0x103); /* DMA modes XXX: may be incorrect */
453
    stw_raw(p + 64, 1); /* PIO modes */
454
    stw_raw(p + 65, 0xb4); /* minimum DMA multiword tx cycle time */
455
    stw_raw(p + 66, 0xb4); /* recommended DMA multiword tx cycle time */
456
    stw_raw(p + 67, 0x12c); /* minimum PIO cycle time without flow control */
457
    stw_raw(p + 68, 0xb4); /* minimum PIO cycle time with IORDY flow control */
458
    
459
    stw_raw(p + 71, 30); /* in ns */
460
    stw_raw(p + 72, 30); /* in ns */
461

    
462
    stw_raw(p + 80, 0x1e); /* support up to ATA/ATAPI-4 */
463
}
464

    
465
static void ide_set_signature(IDEState *s)
466
{
467
    s->select &= 0xf0; /* clear head */
468
    /* put signature */
469
    s->nsector = 1;
470
    s->sector = 1;
471
    if (s->is_cdrom) {
472
        s->lcyl = 0x14;
473
        s->hcyl = 0xeb;
474
    } else if (s->bs) {
475
        s->lcyl = 0;
476
        s->hcyl = 0;
477
    } else {
478
        s->lcyl = 0xff;
479
        s->hcyl = 0xff;
480
    }
481
}
482

    
483
static inline void ide_abort_command(IDEState *s)
484
{
485
    s->status = READY_STAT | ERR_STAT;
486
    s->error = ABRT_ERR;
487
}
488

    
489
static inline void ide_set_irq(IDEState *s)
490
{
491
    if (!(s->cmd & IDE_CMD_DISABLE_IRQ)) {
492
        pic_set_irq(s->irq, 1);
493
    }
494
}
495

    
496
/* prepare data transfer and tell what to do after */
497
static void ide_transfer_start(IDEState *s, uint8_t *buf, int size, 
498
                               EndTransferFunc *end_transfer_func)
499
{
500
    s->end_transfer_func = end_transfer_func;
501
    s->data_ptr = buf;
502
    s->data_end = buf + size;
503
    s->status |= DRQ_STAT;
504
}
505

    
506
static void ide_transfer_stop(IDEState *s)
507
{
508
    s->end_transfer_func = ide_transfer_stop;
509
    s->data_ptr = s->io_buffer;
510
    s->data_end = s->io_buffer;
511
    s->status &= ~DRQ_STAT;
512
}
513

    
514
static int64_t ide_get_sector(IDEState *s)
515
{
516
    int64_t sector_num;
517
    if (s->select & 0x40) {
518
        /* lba */
519
        sector_num = ((s->select & 0x0f) << 24) | (s->hcyl << 16) | 
520
            (s->lcyl << 8) | s->sector;
521
    } else {
522
        sector_num = ((s->hcyl << 8) | s->lcyl) * s->heads * s->sectors +
523
            (s->select & 0x0f) * s->sectors + 
524
            (s->sector - 1);
525
    }
526
    return sector_num;
527
}
528

    
529
static void ide_set_sector(IDEState *s, int64_t sector_num)
530
{
531
    unsigned int cyl, r;
532
    if (s->select & 0x40) {
533
        s->select = (s->select & 0xf0) | (sector_num >> 24);
534
        s->hcyl = (sector_num >> 16);
535
        s->lcyl = (sector_num >> 8);
536
        s->sector = (sector_num);
537
    } else {
538
        cyl = sector_num / (s->heads * s->sectors);
539
        r = sector_num % (s->heads * s->sectors);
540
        s->hcyl = cyl >> 8;
541
        s->lcyl = cyl;
542
        s->select = (s->select & 0xf0) | (r / s->sectors);
543
        s->sector = (r % s->sectors) + 1;
544
    }
545
}
546

    
547
static void ide_sector_read(IDEState *s)
548
{
549
    int64_t sector_num;
550
    int ret, n;
551

    
552
    s->status = READY_STAT | SEEK_STAT;
553
    s->error = 0; /* not needed by IDE spec, but needed by Windows */
554
    sector_num = ide_get_sector(s);
555
    n = s->nsector;
556
    if (n == 0) {
557
        /* no more sector to read from disk */
558
        ide_transfer_stop(s);
559
    } else {
560
#if defined(DEBUG_IDE)
561
        printf("read sector=%Ld\n", sector_num);
562
#endif
563
        if (n > s->req_nb_sectors)
564
            n = s->req_nb_sectors;
565
        ret = bdrv_read(s->bs, sector_num, s->io_buffer, n);
566
        ide_transfer_start(s, s->io_buffer, 512 * n, ide_sector_read);
567
        ide_set_irq(s);
568
        ide_set_sector(s, sector_num + n);
569
        s->nsector -= n;
570
    }
571
}
572

    
573
static void ide_sector_write(IDEState *s)
574
{
575
    int64_t sector_num;
576
    int ret, n, n1;
577

    
578
    s->status = READY_STAT | SEEK_STAT;
579
    sector_num = ide_get_sector(s);
580
#if defined(DEBUG_IDE)
581
    printf("write sector=%Ld\n", sector_num);
582
#endif
583
    n = s->nsector;
584
    if (n > s->req_nb_sectors)
585
        n = s->req_nb_sectors;
586
    ret = bdrv_write(s->bs, sector_num, s->io_buffer, n);
587
    s->nsector -= n;
588
    if (s->nsector == 0) {
589
        /* no more sector to write */
590
        ide_transfer_stop(s);
591
    } else {
592
        n1 = s->nsector;
593
        if (n1 > s->req_nb_sectors)
594
            n1 = s->req_nb_sectors;
595
        ide_transfer_start(s, s->io_buffer, 512 * n1, ide_sector_write);
596
    }
597
    ide_set_sector(s, sector_num + n);
598
    ide_set_irq(s);
599
}
600

    
601
static void ide_atapi_cmd_ok(IDEState *s)
602
{
603
    s->error = 0;
604
    s->status = READY_STAT;
605
    s->nsector = (s->nsector & ~7) | ATAPI_INT_REASON_IO | ATAPI_INT_REASON_CD;
606
    ide_set_irq(s);
607
}
608

    
609
static void ide_atapi_cmd_error(IDEState *s, int sense_key, int asc)
610
{
611
#ifdef DEBUG_IDE_ATAPI
612
    printf("atapi_cmd_error: sense=0x%x asc=0x%x\n", sense_key, asc);
613
#endif
614
    s->error = sense_key << 4;
615
    s->status = READY_STAT | ERR_STAT;
616
    s->nsector = (s->nsector & ~7) | ATAPI_INT_REASON_IO | ATAPI_INT_REASON_CD;
617
    s->sense_key = sense_key;
618
    s->asc = asc;
619
    ide_set_irq(s);
620
}
621

    
622
static inline void cpu_to_ube16(uint8_t *buf, int val)
623
{
624
    buf[0] = val >> 8;
625
    buf[1] = val;
626
}
627

    
628
static inline void cpu_to_ube32(uint8_t *buf, unsigned int val)
629
{
630
    buf[0] = val >> 24;
631
    buf[1] = val >> 16;
632
    buf[2] = val >> 8;
633
    buf[3] = val;
634
}
635

    
636
static inline int ube16_to_cpu(const uint8_t *buf)
637
{
638
    return (buf[0] << 8) | buf[1];
639
}
640

    
641
static inline int ube32_to_cpu(const uint8_t *buf)
642
{
643
    return (buf[0] << 24) | (buf[1] << 16) | (buf[2] << 8) | buf[3];
644
}
645

    
646
/* The whole ATAPI transfer logic is handled in this function */
647
static void ide_atapi_cmd_reply_end(IDEState *s)
648
{
649
    int byte_count_limit, size;
650
#ifdef DEBUG_IDE_ATAPI
651
    printf("reply: tx_size=%d elem_tx_size=%d index=%d\n", 
652
           s->packet_transfer_size,
653
           s->elementary_transfer_size,
654
           s->io_buffer_index);
655
#endif
656
    if (s->packet_transfer_size <= 0) {
657
        /* end of transfer */
658
        ide_transfer_stop(s);
659
        s->status = READY_STAT;
660
        s->nsector = (s->nsector & ~7) | ATAPI_INT_REASON_IO | ATAPI_INT_REASON_CD;
661
        ide_set_irq(s);
662
#ifdef DEBUG_IDE_ATAPI
663
        printf("status=0x%x\n", s->status);
664
#endif
665
    } else {
666
        /* see if a new sector must be read */
667
        if (s->lba != -1 && s->io_buffer_index >= 2048) {
668
            bdrv_read(s->bs, (int64_t)s->lba << 2, s->io_buffer, 4);
669
            s->lba++;
670
            s->io_buffer_index = 0;
671
        }
672
        if (s->elementary_transfer_size > 0) {
673
            /* there are some data left to transmit in this elementary
674
               transfer */
675
            size = 2048 - s->io_buffer_index;
676
            if (size > s->elementary_transfer_size)
677
                size = s->elementary_transfer_size;
678
            ide_transfer_start(s, s->io_buffer + s->io_buffer_index, 
679
                               size, ide_atapi_cmd_reply_end);
680
            s->packet_transfer_size -= size;
681
            s->elementary_transfer_size -= size;
682
            s->io_buffer_index += size;
683
        } else {
684
            /* a new transfer is needed */
685
            s->nsector = (s->nsector & ~7) | ATAPI_INT_REASON_IO;
686
            byte_count_limit = s->lcyl | (s->hcyl << 8);
687
#ifdef DEBUG_IDE_ATAPI
688
            printf("byte_count_limit=%d\n", byte_count_limit);
689
#endif
690
            if (byte_count_limit == 0xffff)
691
                byte_count_limit--;
692
            size = s->packet_transfer_size;
693
            if (size > byte_count_limit) {
694
                /* byte count limit must be even if this case */
695
                if (byte_count_limit & 1)
696
                    byte_count_limit--;
697
                size = byte_count_limit;
698
            }
699
            s->lcyl = size;
700
            s->hcyl = size >> 8;
701
            s->elementary_transfer_size = size;
702
            /* we cannot transmit more than one sector at a time */
703
            if (s->lba != -1) {
704
                if (size > (2048 - s->io_buffer_index))
705
                    size = (2048 - s->io_buffer_index);
706
            }
707
            ide_transfer_start(s, s->io_buffer + s->io_buffer_index, 
708
                               size, ide_atapi_cmd_reply_end);
709
            s->packet_transfer_size -= size;
710
            s->elementary_transfer_size -= size;
711
            s->io_buffer_index += size;
712
            ide_set_irq(s);
713
#ifdef DEBUG_IDE_ATAPI
714
            printf("status=0x%x\n", s->status);
715
#endif
716
        }
717
    }
718
}
719

    
720
/* send a reply of 'size' bytes in s->io_buffer to an ATAPI command */
721
static void ide_atapi_cmd_reply(IDEState *s, int size, int max_size)
722
{
723
    if (size > max_size)
724
        size = max_size;
725
    s->lba = -1; /* no sector read */
726
    s->packet_transfer_size = size;
727
    s->elementary_transfer_size = 0;
728
    s->io_buffer_index = 0;
729

    
730
    s->status = READY_STAT;
731
    ide_atapi_cmd_reply_end(s);
732
}
733

    
734
/* start a CD-CDROM read command */
735
static void ide_atapi_cmd_read(IDEState *s, int lba, int nb_sectors)
736
{
737
#ifdef DEBUG_IDE_ATAPI
738
    printf("read: LBA=%d nb_sectors=%d\n", lba, nb_sectors);
739
#endif
740
    s->lba = lba;
741
    s->packet_transfer_size = nb_sectors * 2048;
742
    s->elementary_transfer_size = 0;
743
    s->io_buffer_index = 2048;
744

    
745
    s->status = READY_STAT;
746
    ide_atapi_cmd_reply_end(s);
747
}
748

    
749
/* same toc as bochs. Return -1 if error or the toc length */
750
static int cdrom_read_toc(IDEState *s, uint8_t *buf, int msf, int start_track)
751
{
752
    uint8_t *q;
753
    int nb_sectors, len;
754
    
755
    if (start_track > 1 && start_track != 0xaa)
756
        return -1;
757
    q = buf + 2;
758
    *q++ = 1;
759
    *q++ = 1;
760
    if (start_track <= 1) {
761
        *q++ = 0; /* reserved */
762
        *q++ = 0x14; /* ADR, control */
763
        *q++ = 1;    /* track number */
764
        *q++ = 0; /* reserved */
765
        if (msf) {
766
            *q++ = 0; /* reserved */
767
            *q++ = 0; /* minute */
768
            *q++ = 2; /* second */
769
            *q++ = 0; /* frame */
770
        } else {
771
            /* sector 0 */
772
            cpu_to_ube32(q, 0);
773
            q += 4;
774
        }
775
    }
776
    /* lead out track */
777
    *q++ = 0; /* reserved */
778
    *q++ = 0x16; /* ADR, control */
779
    *q++ = 0xaa; /* track number */
780
    *q++ = 0; /* reserved */
781
    nb_sectors = s->nb_sectors >> 2;
782
    if (msf) {
783
        *q++ = 0; /* reserved */
784
        *q++ = ((nb_sectors + 150) / 75) / 60;
785
        *q++ = ((nb_sectors + 150) / 75) % 60;
786
        *q++ = (nb_sectors + 150) % 75;
787
    } else {
788
        cpu_to_ube32(q, nb_sectors);
789
        q += 4;
790
    }
791
    len = q - buf;
792
    cpu_to_ube16(buf, len - 2);
793
    return len;
794
}
795

    
796
static void ide_atapi_cmd(IDEState *s)
797
{
798
    const uint8_t *packet;
799
    uint8_t *buf;
800
    int max_len;
801

    
802
    packet = s->io_buffer;
803
    buf = s->io_buffer;
804
#ifdef DEBUG_IDE_ATAPI
805
    {
806
        int i;
807
        printf("ATAPI limit=0x%x packet:", s->lcyl | (s->hcyl << 8));
808
        for(i = 0; i < ATAPI_PACKET_SIZE; i++) {
809
            printf(" %02x", packet[i]);
810
        }
811
        printf("\n");
812
    }
813
#endif
814
    switch(s->io_buffer[0]) {
815
    case GPCMD_TEST_UNIT_READY:
816
        if (s->bs) {
817
            ide_atapi_cmd_ok(s);
818
        } else {
819
            ide_atapi_cmd_error(s, SENSE_NOT_READY, 
820
                                ASC_MEDIUM_NOT_PRESENT);
821
        }
822
        break;
823
    case GPCMD_MODE_SENSE_10:
824
        {
825
            int action, code;
826
            max_len = ube16_to_cpu(packet + 7);
827
            action = packet[2] >> 6;
828
            code = packet[2] & 0x3f;
829
            switch(action) {
830
            case 0: /* current values */
831
                switch(code) {
832
                case 0x01: /* error recovery */
833
                    cpu_to_ube16(&buf[0], 16 + 6);
834
                    buf[2] = 0x70;
835
                    buf[3] = 0;
836
                    buf[4] = 0;
837
                    buf[5] = 0;
838
                    buf[6] = 0;
839
                    buf[7] = 0;
840

    
841
                    buf[8] = 0x01;
842
                    buf[9] = 0x06;
843
                    buf[10] = 0x00;
844
                    buf[11] = 0x05;
845
                    buf[12] = 0x00;
846
                    buf[13] = 0x00;
847
                    buf[14] = 0x00;
848
                    buf[15] = 0x00;
849
                    ide_atapi_cmd_reply(s, 16, max_len);
850
                    break;
851
                case 0x2a:
852
                    cpu_to_ube16(&buf[0], 28 + 6);
853
                    buf[2] = 0x70;
854
                    buf[3] = 0;
855
                    buf[4] = 0;
856
                    buf[5] = 0;
857
                    buf[6] = 0;
858
                    buf[7] = 0;
859

    
860
                    buf[8] = 0x2a;
861
                    buf[9] = 0x12;
862
                    buf[10] = 0x00;
863
                    buf[11] = 0x00;
864
                    
865
                    buf[12] = 0x70;
866
                    buf[13] = 3 << 5;
867
                    buf[14] = (1 << 0) | (1 << 3) | (1 << 5);
868
                    if (s->cdrom_locked)
869
                        buf[6] |= 1 << 1;
870
                    buf[15] = 0x00;
871
                    cpu_to_ube16(&buf[16], 706);
872
                    buf[18] = 0;
873
                    buf[19] = 2;
874
                    cpu_to_ube16(&buf[20], 512);
875
                    cpu_to_ube16(&buf[22], 706);
876
                    buf[24] = 0;
877
                    buf[25] = 0;
878
                    buf[26] = 0;
879
                    buf[27] = 0;
880
                    ide_atapi_cmd_reply(s, 28, max_len);
881
                    break;
882
                default:
883
                    goto error_cmd;
884
                }
885
                break;
886
            case 1: /* changeable values */
887
                goto error_cmd;
888
            case 2: /* default values */
889
                goto error_cmd;
890
            default:
891
            case 3: /* saved values */
892
                ide_atapi_cmd_error(s, SENSE_ILLEGAL_REQUEST, 
893
                                    ASC_SAVING_PARAMETERS_NOT_SUPPORTED);
894
                break;
895
            }
896
        }
897
        break;
898
    case GPCMD_REQUEST_SENSE:
899
        max_len = packet[4];
900
        memset(buf, 0, 18);
901
        buf[0] = 0x70 | (1 << 7);
902
        buf[2] = s->sense_key;
903
        buf[7] = 10;
904
        buf[12] = s->asc;
905
        ide_atapi_cmd_reply(s, 18, max_len);
906
        break;
907
    case GPCMD_PREVENT_ALLOW_MEDIUM_REMOVAL:
908
        if (s->bs) {
909
            s->cdrom_locked = packet[4] & 1;
910
            ide_atapi_cmd_ok(s);
911
        } else {
912
            ide_atapi_cmd_error(s, SENSE_NOT_READY, 
913
                                ASC_MEDIUM_NOT_PRESENT);
914
        }
915
        break;
916
    case GPCMD_READ_10:
917
    case GPCMD_READ_12:
918
        {
919
            int nb_sectors, lba;
920

    
921
            if (!s->bs) {
922
                ide_atapi_cmd_error(s, SENSE_NOT_READY, 
923
                                    ASC_MEDIUM_NOT_PRESENT);
924
                break;
925
            }
926
            if (packet[0] == GPCMD_READ_10)
927
                nb_sectors = ube16_to_cpu(packet + 7);
928
            else
929
                nb_sectors = ube32_to_cpu(packet + 6);
930
            lba = ube32_to_cpu(packet + 2);
931
            if (nb_sectors == 0) {
932
                ide_atapi_cmd_ok(s);
933
                break;
934
            }
935
            if (((int64_t)(lba + nb_sectors) << 2) > s->nb_sectors) {
936
                ide_atapi_cmd_error(s, SENSE_ILLEGAL_REQUEST, 
937
                                    ASC_LOGICAL_BLOCK_OOR);
938
                break;
939
            }
940
            ide_atapi_cmd_read(s, lba, nb_sectors);
941
        }
942
        break;
943
    case GPCMD_SEEK:
944
        {
945
            int lba;
946
            if (!s->bs) {
947
                ide_atapi_cmd_error(s, SENSE_NOT_READY, 
948
                                    ASC_MEDIUM_NOT_PRESENT);
949
                break;
950
            }
951
            lba = ube32_to_cpu(packet + 2);
952
            if (((int64_t)lba << 2) > s->nb_sectors) {
953
                ide_atapi_cmd_error(s, SENSE_ILLEGAL_REQUEST, 
954
                                    ASC_LOGICAL_BLOCK_OOR);
955
                break;
956
            }
957
            ide_atapi_cmd_ok(s);
958
        }
959
        break;
960
    case GPCMD_START_STOP_UNIT:
961
        {
962
            int start, eject;
963
            start = packet[4] & 1;
964
            eject = (packet[4] >> 1) & 1;
965
            
966
            /* XXX: currently none implemented */
967
            ide_atapi_cmd_ok(s);
968
        }
969
        break;
970
    case GPCMD_MECHANISM_STATUS:
971
        {
972
            max_len = ube16_to_cpu(packet + 8);
973
            cpu_to_ube16(buf, 0);
974
            /* no current LBA */
975
            buf[2] = 0;
976
            buf[3] = 0;
977
            buf[4] = 0;
978
            buf[5] = 1;
979
            cpu_to_ube16(buf + 6, 0);
980
            ide_atapi_cmd_reply(s, 8, max_len);
981
        }
982
        break;
983
    case GPCMD_READ_TOC_PMA_ATIP:
984
        {
985
            int format, msf, start_track, len;
986

    
987
            if (!s->bs) {
988
                ide_atapi_cmd_error(s, SENSE_NOT_READY, 
989
                                    ASC_MEDIUM_NOT_PRESENT);
990
                break;
991
            }
992
            max_len = ube16_to_cpu(packet + 7);
993
            format = packet[9] >> 6;
994
            msf = (packet[1] >> 1) & 1;
995
            start_track = packet[6];
996
            switch(format) {
997
            case 0:
998
                len = cdrom_read_toc(s, buf, msf, start_track);
999
                if (len < 0)
1000
                    goto error_cmd;
1001
                ide_atapi_cmd_reply(s, len, max_len);
1002
                break;
1003
            case 1:
1004
                /* multi session : only a single session defined */
1005
                memset(buf, 0, 12);
1006
                buf[1] = 0x0a;
1007
                buf[2] = 0x01;
1008
                buf[3] = 0x01;
1009
                ide_atapi_cmd_reply(s, 12, max_len);
1010
                break;
1011
            default:
1012
                goto error_cmd;
1013
            }
1014
        }
1015
        break;
1016
    case GPCMD_READ_CDVD_CAPACITY:
1017
        if (!s->bs) {
1018
            ide_atapi_cmd_error(s, SENSE_NOT_READY, 
1019
                                ASC_MEDIUM_NOT_PRESENT);
1020
            break;
1021
        }
1022
        /* NOTE: it is really the number of sectors minus 1 */
1023
        cpu_to_ube32(buf, (s->nb_sectors >> 2) - 1);
1024
        cpu_to_ube32(buf + 4, 2048);
1025
        ide_atapi_cmd_reply(s, 8, 8);
1026
        break;
1027
    case GPCMD_INQUIRY:
1028
        max_len = packet[4];
1029
        buf[0] = 0x05; /* CD-ROM */
1030
        buf[1] = 0x80; /* removable */
1031
        buf[2] = 0x00; /* ISO */
1032
        buf[3] = 0x21; /* ATAPI-2 (XXX: put ATAPI-4 ?) */
1033
        buf[4] = 31; /* additionnal length */
1034
        buf[5] = 0; /* reserved */
1035
        buf[6] = 0; /* reserved */
1036
        buf[7] = 0; /* reserved */
1037
        padstr8(buf + 8, 8, "QEMU");
1038
        padstr8(buf + 16, 16, "QEMU CD-ROM");
1039
        padstr8(buf + 32, 4, QEMU_VERSION);
1040
        ide_atapi_cmd_reply(s, 36, max_len);
1041
        break;
1042
    default:
1043
        error_cmd:
1044
        ide_atapi_cmd_error(s, SENSE_ILLEGAL_REQUEST, 
1045
                            ASC_INV_FIELD_IN_CMD_PACKET);
1046
        break;
1047
    }
1048
}
1049

    
1050
static void ide_ioport_write(CPUState *env, uint32_t addr, uint32_t val)
1051
{
1052
    IDEState *ide_if = get_ide_interface(addr);
1053
    IDEState *s = ide_if->cur_drive;
1054
    int unit, n;
1055

    
1056
#ifdef DEBUG_IDE
1057
    printf("IDE: write addr=0x%x val=0x%02x\n", addr, val);
1058
#endif
1059
    addr &= 7;
1060
    switch(addr) {
1061
    case 0:
1062
        break;
1063
    case 1:
1064
        s->feature = val;
1065
        break;
1066
    case 2:
1067
        if (val == 0)
1068
            val = 256;
1069
        s->nsector = val;
1070
        break;
1071
    case 3:
1072
        s->sector = val;
1073
        break;
1074
    case 4:
1075
        s->lcyl = val;
1076
        break;
1077
    case 5:
1078
        s->hcyl = val;
1079
        break;
1080
    case 6:
1081
        /* select drive */
1082
        unit = (val >> 4) & 1;
1083
        s = ide_if + unit;
1084
        ide_if->cur_drive = s;
1085
        s->select = val;
1086
        break;
1087
    default:
1088
    case 7:
1089
        /* command */
1090
#if defined(DEBUG_IDE)
1091
        printf("ide: CMD=%02x\n", val);
1092
#endif
1093
        switch(val) {
1094
        case WIN_IDENTIFY:
1095
            if (s->bs && !s->is_cdrom) {
1096
                ide_identify(s);
1097
                s->status = READY_STAT;
1098
                ide_transfer_start(s, s->io_buffer, 512, ide_transfer_stop);
1099
            } else {
1100
                if (s->is_cdrom) {
1101
                    ide_set_signature(s);
1102
                }
1103
                ide_abort_command(s);
1104
            }
1105
            ide_set_irq(s);
1106
            break;
1107
        case WIN_SPECIFY:
1108
        case WIN_RECAL:
1109
            s->error = 0;
1110
            s->status = READY_STAT;
1111
            ide_set_irq(s);
1112
            break;
1113
        case WIN_SETMULT:
1114
            if (s->nsector > MAX_MULT_SECTORS || 
1115
                s->nsector == 0 ||
1116
                (s->nsector & (s->nsector - 1)) != 0) {
1117
                ide_abort_command(s);
1118
            } else {
1119
                s->mult_sectors = s->nsector;
1120
                s->status = READY_STAT;
1121
            }
1122
            ide_set_irq(s);
1123
            break;
1124
        case WIN_VERIFY:
1125
        case WIN_VERIFY_ONCE:
1126
            /* do sector number check ? */
1127
            s->status = READY_STAT;
1128
            ide_set_irq(s);
1129
            break;
1130
        case WIN_READ:
1131
        case WIN_READ_ONCE:
1132
            if (!s->bs) 
1133
                goto abort_cmd;
1134
            s->req_nb_sectors = 1;
1135
            ide_sector_read(s);
1136
            break;
1137
        case WIN_WRITE:
1138
        case WIN_WRITE_ONCE:
1139
            s->error = 0;
1140
            s->status = SEEK_STAT;
1141
            s->req_nb_sectors = 1;
1142
            ide_transfer_start(s, s->io_buffer, 512, ide_sector_write);
1143
            break;
1144
        case WIN_MULTREAD:
1145
            if (!s->mult_sectors)
1146
                goto abort_cmd;
1147
            s->req_nb_sectors = s->mult_sectors;
1148
            ide_sector_read(s);
1149
            break;
1150
        case WIN_MULTWRITE:
1151
            if (!s->mult_sectors)
1152
                goto abort_cmd;
1153
            s->error = 0;
1154
            s->status = SEEK_STAT;
1155
            s->req_nb_sectors = s->mult_sectors;
1156
            n = s->nsector;
1157
            if (n > s->req_nb_sectors)
1158
                n = s->req_nb_sectors;
1159
            ide_transfer_start(s, s->io_buffer, 512 * n, ide_sector_write);
1160
            break;
1161
        case WIN_READ_NATIVE_MAX:
1162
            ide_set_sector(s, s->nb_sectors - 1);
1163
            s->status = READY_STAT;
1164
            ide_set_irq(s);
1165
            break;
1166
        case WIN_CHECKPOWERMODE1:
1167
            s->nsector = 0xff; /* device active or idle */
1168
            s->status = READY_STAT;
1169
            ide_set_irq(s);
1170
            break;
1171

    
1172
            /* ATAPI commands */
1173
        case WIN_PIDENTIFY:
1174
            if (s->is_cdrom) {
1175
                ide_atapi_identify(s);
1176
                s->status = READY_STAT;
1177
                ide_transfer_start(s, s->io_buffer, 512, ide_transfer_stop);
1178
            } else {
1179
                ide_abort_command(s);
1180
            }
1181
            ide_set_irq(s);
1182
            break;
1183
        case WIN_SRST:
1184
            if (!s->is_cdrom)
1185
                goto abort_cmd;
1186
            ide_set_signature(s);
1187
            s->status = 0x00; /* NOTE: READY is _not_ set */
1188
            s->error = 0x01;
1189
            break;
1190
        case WIN_PACKETCMD:
1191
            if (!s->is_cdrom)
1192
                goto abort_cmd;
1193
            /* DMA or overlapping commands not supported */
1194
            if ((s->feature & 0x03) != 0)
1195
                goto abort_cmd;
1196
            s->nsector = 1;
1197
            ide_transfer_start(s, s->io_buffer, ATAPI_PACKET_SIZE, 
1198
                               ide_atapi_cmd);
1199
            break;
1200
        default:
1201
        abort_cmd:
1202
            ide_abort_command(s);
1203
            ide_set_irq(s);
1204
            break;
1205
        }
1206
    }
1207
}
1208

    
1209
static uint32_t ide_ioport_read(CPUState *env, uint32_t addr1)
1210
{
1211
    IDEState *s = get_ide_interface(addr1)->cur_drive;
1212
    uint32_t addr;
1213
    int ret;
1214

    
1215
    addr = addr1 & 7;
1216
    switch(addr) {
1217
    case 0:
1218
        ret = 0xff;
1219
        break;
1220
    case 1:
1221
        ret = s->error;
1222
        break;
1223
    case 2:
1224
        ret = s->nsector & 0xff;
1225
        break;
1226
    case 3:
1227
        ret = s->sector;
1228
        break;
1229
    case 4:
1230
        ret = s->lcyl;
1231
        break;
1232
    case 5:
1233
        ret = s->hcyl;
1234
        break;
1235
    case 6:
1236
        ret = s->select;
1237
        break;
1238
    default:
1239
    case 7:
1240
        ret = s->status;
1241
        pic_set_irq(s->irq, 0);
1242
        break;
1243
    }
1244
#ifdef DEBUG_IDE
1245
    printf("ide: read addr=0x%x val=%02x\n", addr1, ret);
1246
#endif
1247
    return ret;
1248
}
1249

    
1250
static uint32_t ide_status_read(CPUState *env, uint32_t addr)
1251
{
1252
    IDEState *s = get_ide_interface(addr)->cur_drive;
1253
    int ret;
1254
    ret = s->status;
1255
#ifdef DEBUG_IDE
1256
    printf("ide: read status addr=0x%x val=%02x\n", addr, ret);
1257
#endif
1258
    return ret;
1259
}
1260

    
1261
static void ide_cmd_write(CPUState *env, uint32_t addr, uint32_t val)
1262
{
1263
    IDEState *ide_if = get_ide_interface(addr);
1264
    IDEState *s;
1265
    int i;
1266

    
1267
#ifdef DEBUG_IDE
1268
    printf("ide: write control addr=0x%x val=%02x\n", addr, val);
1269
#endif
1270
    /* common for both drives */
1271
    if (!(ide_if[0].cmd & IDE_CMD_RESET) &&
1272
        (val & IDE_CMD_RESET)) {
1273
        /* reset low to high */
1274
        for(i = 0;i < 2; i++) {
1275
            s = &ide_if[i];
1276
            s->status = BUSY_STAT | SEEK_STAT;
1277
            s->error = 0x01;
1278
        }
1279
    } else if ((ide_if[0].cmd & IDE_CMD_RESET) &&
1280
               !(val & IDE_CMD_RESET)) {
1281
        /* high to low */
1282
        for(i = 0;i < 2; i++) {
1283
            s = &ide_if[i];
1284
            if (s->is_cdrom)
1285
                s->status = 0x00; /* NOTE: READY is _not_ set */
1286
            else
1287
                s->status = READY_STAT;
1288
            ide_set_signature(s);
1289
        }
1290
    }
1291

    
1292
    ide_if[0].cmd = val;
1293
    ide_if[1].cmd = val;
1294
}
1295

    
1296
static void ide_data_writew(CPUState *env, uint32_t addr, uint32_t val)
1297
{
1298
    IDEState *s = get_ide_interface(addr)->cur_drive;
1299
    uint8_t *p;
1300

    
1301
    p = s->data_ptr;
1302
    *(uint16_t *)p = tswap16(val);
1303
    p += 2;
1304
    s->data_ptr = p;
1305
    if (p >= s->data_end)
1306
        s->end_transfer_func(s);
1307
}
1308

    
1309
static uint32_t ide_data_readw(CPUState *env, uint32_t addr)
1310
{
1311
    IDEState *s = get_ide_interface(addr)->cur_drive;
1312
    uint8_t *p;
1313
    int ret;
1314
    p = s->data_ptr;
1315
    ret = tswap16(*(uint16_t *)p);
1316
    p += 2;
1317
    s->data_ptr = p;
1318
    if (p >= s->data_end)
1319
        s->end_transfer_func(s);
1320
    return ret;
1321
}
1322

    
1323
static void ide_data_writel(CPUState *env, uint32_t addr, uint32_t val)
1324
{
1325
    IDEState *s = get_ide_interface(addr)->cur_drive;
1326
    uint8_t *p;
1327

    
1328
    p = s->data_ptr;
1329
    *(uint32_t *)p = tswap32(val);
1330
    p += 4;
1331
    s->data_ptr = p;
1332
    if (p >= s->data_end)
1333
        s->end_transfer_func(s);
1334
}
1335

    
1336
static uint32_t ide_data_readl(CPUState *env, uint32_t addr)
1337
{
1338
    IDEState *s = get_ide_interface(addr)->cur_drive;
1339
    uint8_t *p;
1340
    int ret;
1341
    
1342
    p = s->data_ptr;
1343
    ret = tswap32(*(uint32_t *)p);
1344
    p += 4;
1345
    s->data_ptr = p;
1346
    if (p >= s->data_end)
1347
        s->end_transfer_func(s);
1348
    return ret;
1349
}
1350

    
1351
static void ide_reset(IDEState *s)
1352
{
1353
    s->mult_sectors = MAX_MULT_SECTORS;
1354
    s->cur_drive = s;
1355
    s->select = 0xa0;
1356
    s->status = READY_STAT;
1357
    ide_set_signature(s);
1358
}
1359

    
1360
struct partition {
1361
        uint8_t boot_ind;                /* 0x80 - active */
1362
        uint8_t head;                /* starting head */
1363
        uint8_t sector;                /* starting sector */
1364
        uint8_t cyl;                /* starting cylinder */
1365
        uint8_t sys_ind;                /* What partition type */
1366
        uint8_t end_head;                /* end head */
1367
        uint8_t end_sector;        /* end sector */
1368
        uint8_t end_cyl;                /* end cylinder */
1369
        uint32_t start_sect;        /* starting sector counting from 0 */
1370
        uint32_t nr_sects;                /* nr of sectors in partition */
1371
} __attribute__((packed));
1372

    
1373
/* try to guess the IDE geometry from the MSDOS partition table */
1374
static void ide_guess_geometry(IDEState *s)
1375
{
1376
    uint8_t buf[512];
1377
    int ret, i;
1378
    struct partition *p;
1379
    uint32_t nr_sects;
1380

    
1381
    if (s->cylinders != 0)
1382
        return;
1383
    ret = bdrv_read(s->bs, 0, buf, 1);
1384
    if (ret < 0)
1385
        return;
1386
    /* test msdos magic */
1387
    if (buf[510] != 0x55 || buf[511] != 0xaa)
1388
        return;
1389
    for(i = 0; i < 4; i++) {
1390
        p = ((struct partition *)(buf + 0x1be)) + i;
1391
        nr_sects = tswap32(p->nr_sects);
1392
        if (nr_sects && p->end_head) {
1393
            /* We make the assumption that the partition terminates on
1394
               a cylinder boundary */
1395
            s->heads = p->end_head + 1;
1396
            s->sectors = p->end_sector & 63;
1397
            s->cylinders = s->nb_sectors / (s->heads * s->sectors);
1398
#if 0
1399
            printf("guessed partition: CHS=%d %d %d\n", 
1400
                   s->cylinders, s->heads, s->sectors);
1401
#endif
1402
        }
1403
    }
1404
}
1405

    
1406
void ide_init(void)
1407
{
1408
    IDEState *s;
1409
    int i, cylinders, iobase, iobase2;
1410
    int64_t nb_sectors;
1411
    static const int ide_iobase[2] = { 0x1f0, 0x170 };
1412
    static const int ide_iobase2[2] = { 0x3f6, 0x376 };
1413
    static const int ide_irq[2] = { 14, 15 };
1414

    
1415
    for(i = 0; i < MAX_DISKS; i++) {
1416
        s = &ide_state[i];
1417
        s->bs = bs_table[i];
1418
        if (s->bs) {
1419
            bdrv_get_geometry(s->bs, &nb_sectors);
1420
            s->nb_sectors = nb_sectors;
1421
            ide_guess_geometry(s);
1422
            if (s->cylinders == 0) {
1423
                /* if no geometry, use a LBA compatible one */
1424
                cylinders = nb_sectors / (16 * 63);
1425
                if (cylinders > 16383)
1426
                    cylinders = 16383;
1427
                else if (cylinders < 2)
1428
                    cylinders = 2;
1429
                s->cylinders = cylinders;
1430
                s->heads = 16;
1431
                s->sectors = 63;
1432
            }
1433
        }
1434
        s->irq = ide_irq[i >> 1];
1435
        ide_reset(s);
1436
    }
1437
    for(i = 0; i < (MAX_DISKS / 2); i++) {
1438
        iobase = ide_iobase[i];
1439
        iobase2 = ide_iobase2[i];
1440
        ide_table[iobase >> 3] = &ide_state[2 * i];
1441
        if (ide_iobase2[i]) 
1442
            ide_table[iobase2 >> 3] = &ide_state[2 * i];
1443
        register_ioport_write(iobase, 8, ide_ioport_write, 1);
1444
        register_ioport_read(iobase, 8, ide_ioport_read, 1);
1445
        register_ioport_read(iobase2, 1, ide_status_read, 1);
1446
        register_ioport_write(iobase2, 1, ide_cmd_write, 1);
1447
        
1448
        /* data ports */
1449
        register_ioport_write(iobase, 2, ide_data_writew, 2);
1450
        register_ioport_read(iobase, 2, ide_data_readw, 2);
1451
        register_ioport_write(iobase, 4, ide_data_writel, 4);
1452
        register_ioport_read(iobase, 4, ide_data_readl, 4);
1453
    }
1454
}
1455

    
1456
void ide_set_geometry(int n, int cyls, int heads, int secs)
1457
{
1458
    ide_state[n].cylinders = cyls;
1459
    ide_state[n].heads = heads;
1460
    ide_state[n].sectors = secs;
1461
}
1462

    
1463
void ide_set_cdrom(int n, int is_cdrom)
1464
{
1465
    ide_state[n].is_cdrom = is_cdrom;
1466
}