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716 lines
20 KiB
C
716 lines
20 KiB
C
/*
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* ata_id - reads product/serial number from ATA drives
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*
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* Copyright (C) 2005-2008 Kay Sievers <kay.sievers@vrfy.org>
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* Copyright (C) 2009 Lennart Poettering <lennart@poettering.net>
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* Copyright (C) 2009-2010 David Zeuthen <zeuthen@gmail.com>
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdint.h>
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#include <unistd.h>
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#include <fcntl.h>
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#include <ctype.h>
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#include <assert.h>
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#include <string.h>
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#include <errno.h>
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#include <getopt.h>
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#include <scsi/scsi.h>
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#include <scsi/sg.h>
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#include <scsi/scsi_ioctl.h>
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#include <sys/ioctl.h>
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#include <sys/types.h>
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#include <sys/stat.h>
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#include <linux/types.h>
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#include <linux/hdreg.h>
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#include <linux/fs.h>
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#include <linux/cdrom.h>
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#include <linux/bsg.h>
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#include <arpa/inet.h>
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#include "libudev.h"
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#include "libudev-private.h"
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#define COMMAND_TIMEOUT_MSEC (30 * 1000)
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static int disk_scsi_inquiry_command(int fd,
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void *buf,
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size_t buf_len)
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{
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struct sg_io_v4 io_v4;
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uint8_t cdb[12];
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uint8_t sense[32];
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int ret;
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/*
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* INQUIRY, see SPC-4 section 6.4
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*/
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memset(cdb, 0, sizeof(cdb));
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cdb[0] = 0x12; /* OPERATION CODE: INQUIRY */
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cdb[3] = (buf_len >> 8); /* ALLOCATION LENGTH */
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cdb[4] = (buf_len & 0xff);
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memset(sense, 0, sizeof(sense));
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memset(&io_v4, 0, sizeof(struct sg_io_v4));
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io_v4.guard = 'Q';
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io_v4.protocol = BSG_PROTOCOL_SCSI;
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io_v4.subprotocol = BSG_SUB_PROTOCOL_SCSI_CMD;
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io_v4.request_len = sizeof (cdb);
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io_v4.request = (uintptr_t) cdb;
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io_v4.max_response_len = sizeof (sense);
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io_v4.response = (uintptr_t) sense;
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io_v4.din_xfer_len = buf_len;
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io_v4.din_xferp = (uintptr_t) buf;
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io_v4.timeout = COMMAND_TIMEOUT_MSEC;
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ret = ioctl(fd, SG_IO, &io_v4);
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if (ret != 0) {
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/* could be that the driver doesn't do version 4, try version 3 */
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if (errno == EINVAL) {
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struct sg_io_hdr io_hdr;
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memset(&io_hdr, 0, sizeof(struct sg_io_hdr));
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io_hdr.interface_id = 'S';
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io_hdr.cmdp = (unsigned char*) cdb;
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io_hdr.cmd_len = sizeof (cdb);
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io_hdr.dxferp = buf;
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io_hdr.dxfer_len = buf_len;
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io_hdr.sbp = sense;
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io_hdr.mx_sb_len = sizeof (sense);
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io_hdr.dxfer_direction = SG_DXFER_FROM_DEV;
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io_hdr.timeout = COMMAND_TIMEOUT_MSEC;
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ret = ioctl(fd, SG_IO, &io_hdr);
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if (ret != 0)
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goto out;
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/* even if the ioctl succeeds, we need to check the return value */
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if (!(io_hdr.status == 0 &&
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io_hdr.host_status == 0 &&
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io_hdr.driver_status == 0)) {
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errno = EIO;
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ret = -1;
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goto out;
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}
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} else {
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goto out;
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}
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}
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/* even if the ioctl succeeds, we need to check the return value */
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if (!(io_v4.device_status == 0 &&
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io_v4.transport_status == 0 &&
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io_v4.driver_status == 0)) {
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errno = EIO;
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ret = -1;
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goto out;
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}
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out:
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return ret;
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}
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static int disk_identify_command(int fd,
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void *buf,
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size_t buf_len)
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{
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struct sg_io_v4 io_v4;
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uint8_t cdb[12];
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uint8_t sense[32];
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uint8_t *desc = sense+8;
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int ret;
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/*
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* ATA Pass-Through 12 byte command, as described in
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*
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* T10 04-262r8 ATA Command Pass-Through
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*
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* from http://www.t10.org/ftp/t10/document.04/04-262r8.pdf
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*/
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memset(cdb, 0, sizeof(cdb));
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cdb[0] = 0xa1; /* OPERATION CODE: 12 byte pass through */
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cdb[1] = 4 << 1; /* PROTOCOL: PIO Data-in */
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cdb[2] = 0x2e; /* OFF_LINE=0, CK_COND=1, T_DIR=1, BYT_BLOK=1, T_LENGTH=2 */
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cdb[3] = 0; /* FEATURES */
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cdb[4] = 1; /* SECTORS */
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cdb[5] = 0; /* LBA LOW */
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cdb[6] = 0; /* LBA MID */
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cdb[7] = 0; /* LBA HIGH */
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cdb[8] = 0 & 0x4F; /* SELECT */
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cdb[9] = 0xEC; /* Command: ATA IDENTIFY DEVICE */;
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memset(sense, 0, sizeof(sense));
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memset(&io_v4, 0, sizeof(struct sg_io_v4));
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io_v4.guard = 'Q';
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io_v4.protocol = BSG_PROTOCOL_SCSI;
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io_v4.subprotocol = BSG_SUB_PROTOCOL_SCSI_CMD;
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io_v4.request_len = sizeof (cdb);
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io_v4.request = (uintptr_t) cdb;
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io_v4.max_response_len = sizeof (sense);
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io_v4.response = (uintptr_t) sense;
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io_v4.din_xfer_len = buf_len;
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io_v4.din_xferp = (uintptr_t) buf;
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io_v4.timeout = COMMAND_TIMEOUT_MSEC;
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ret = ioctl(fd, SG_IO, &io_v4);
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if (ret != 0) {
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/* could be that the driver doesn't do version 4, try version 3 */
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if (errno == EINVAL) {
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struct sg_io_hdr io_hdr;
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memset(&io_hdr, 0, sizeof(struct sg_io_hdr));
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io_hdr.interface_id = 'S';
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io_hdr.cmdp = (unsigned char*) cdb;
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io_hdr.cmd_len = sizeof (cdb);
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io_hdr.dxferp = buf;
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io_hdr.dxfer_len = buf_len;
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io_hdr.sbp = sense;
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io_hdr.mx_sb_len = sizeof (sense);
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io_hdr.dxfer_direction = SG_DXFER_FROM_DEV;
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io_hdr.timeout = COMMAND_TIMEOUT_MSEC;
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ret = ioctl(fd, SG_IO, &io_hdr);
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if (ret != 0)
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goto out;
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} else {
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goto out;
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}
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}
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if (!(sense[0] == 0x72 && desc[0] == 0x9 && desc[1] == 0x0c)) {
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errno = EIO;
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ret = -1;
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goto out;
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}
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out:
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return ret;
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}
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static int disk_identify_packet_device_command(int fd,
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void *buf,
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size_t buf_len)
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{
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struct sg_io_v4 io_v4;
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uint8_t cdb[16];
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uint8_t sense[32];
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uint8_t *desc = sense+8;
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int ret;
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/*
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* ATA Pass-Through 16 byte command, as described in
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*
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* T10 04-262r8 ATA Command Pass-Through
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*
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* from http://www.t10.org/ftp/t10/document.04/04-262r8.pdf
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*/
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memset(cdb, 0, sizeof(cdb));
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cdb[0] = 0x85; /* OPERATION CODE: 16 byte pass through */
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cdb[1] = 4 << 1; /* PROTOCOL: PIO Data-in */
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cdb[2] = 0x2e; /* OFF_LINE=0, CK_COND=1, T_DIR=1, BYT_BLOK=1, T_LENGTH=2 */
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cdb[3] = 0; /* FEATURES */
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cdb[4] = 0; /* FEATURES */
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cdb[5] = 0; /* SECTORS */
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cdb[6] = 1; /* SECTORS */
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cdb[7] = 0; /* LBA LOW */
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cdb[8] = 0; /* LBA LOW */
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cdb[9] = 0; /* LBA MID */
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cdb[10] = 0; /* LBA MID */
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cdb[11] = 0; /* LBA HIGH */
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cdb[12] = 0; /* LBA HIGH */
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cdb[13] = 0; /* DEVICE */
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cdb[14] = 0xA1; /* Command: ATA IDENTIFY PACKET DEVICE */;
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cdb[15] = 0; /* CONTROL */
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memset(sense, 0, sizeof(sense));
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memset(&io_v4, 0, sizeof(struct sg_io_v4));
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io_v4.guard = 'Q';
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io_v4.protocol = BSG_PROTOCOL_SCSI;
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io_v4.subprotocol = BSG_SUB_PROTOCOL_SCSI_CMD;
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io_v4.request_len = sizeof (cdb);
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io_v4.request = (uintptr_t) cdb;
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io_v4.max_response_len = sizeof (sense);
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io_v4.response = (uintptr_t) sense;
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io_v4.din_xfer_len = buf_len;
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io_v4.din_xferp = (uintptr_t) buf;
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io_v4.timeout = COMMAND_TIMEOUT_MSEC;
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ret = ioctl(fd, SG_IO, &io_v4);
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if (ret != 0) {
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/* could be that the driver doesn't do version 4, try version 3 */
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if (errno == EINVAL) {
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struct sg_io_hdr io_hdr;
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memset(&io_hdr, 0, sizeof(struct sg_io_hdr));
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io_hdr.interface_id = 'S';
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io_hdr.cmdp = (unsigned char*) cdb;
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io_hdr.cmd_len = sizeof (cdb);
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io_hdr.dxferp = buf;
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io_hdr.dxfer_len = buf_len;
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io_hdr.sbp = sense;
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io_hdr.mx_sb_len = sizeof (sense);
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io_hdr.dxfer_direction = SG_DXFER_FROM_DEV;
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io_hdr.timeout = COMMAND_TIMEOUT_MSEC;
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ret = ioctl(fd, SG_IO, &io_hdr);
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if (ret != 0)
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goto out;
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} else {
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goto out;
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}
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}
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if (!(sense[0] == 0x72 && desc[0] == 0x9 && desc[1] == 0x0c)) {
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errno = EIO;
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ret = -1;
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goto out;
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}
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out:
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return ret;
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}
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/**
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* disk_identify_get_string:
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* @identify: A block of IDENTIFY data
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* @offset_words: Offset of the string to get, in words.
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* @dest: Destination buffer for the string.
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* @dest_len: Length of destination buffer, in bytes.
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*
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* Copies the ATA string from @identify located at @offset_words into @dest.
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*/
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static void disk_identify_get_string (uint8_t identify[512],
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unsigned int offset_words,
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char *dest,
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size_t dest_len)
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{
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unsigned int c1;
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unsigned int c2;
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assert (identify != NULL);
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assert (dest != NULL);
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assert ((dest_len & 1) == 0);
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while (dest_len > 0) {
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c1 = ((uint16_t *) identify)[offset_words] >> 8;
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c2 = ((uint16_t *) identify)[offset_words] & 0xff;
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*dest = c1;
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dest++;
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*dest = c2;
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dest++;
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offset_words++;
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dest_len -= 2;
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}
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}
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static void disk_identify_fixup_string (uint8_t identify[512],
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unsigned int offset_words,
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size_t len)
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{
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disk_identify_get_string(identify, offset_words,
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(char *) identify + offset_words * 2, len);
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}
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static void disk_identify_fixup_uint16 (uint8_t identify[512], unsigned int offset_words)
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{
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uint16_t *p;
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p = (uint16_t *) identify;
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p[offset_words] = le16toh (p[offset_words]);
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}
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/**
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* disk_identify:
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* @udev: The libudev context.
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* @fd: File descriptor for the block device.
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* @out_identify: Return location for IDENTIFY data.
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* @out_is_packet_device: Return location for whether returned data is from a IDENTIFY PACKET DEVICE.
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*
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* Sends the IDENTIFY DEVICE or IDENTIFY PACKET DEVICE command to the
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* device represented by @fd. If successful, then the result will be
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* copied into @out_identify and @out_is_packet_device.
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*
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* This routine is based on code from libatasmart, Copyright 2008
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* Lennart Poettering, LGPL v2.1.
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*
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* Returns: 0 if the data was successfully obtained, otherwise
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* non-zero with errno set.
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*/
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static int disk_identify (struct udev *udev,
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int fd,
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uint8_t out_identify[512],
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int *out_is_packet_device)
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{
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int ret;
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uint8_t inquiry_buf[36];
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int peripheral_device_type;
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int all_nul_bytes;
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int n;
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int is_packet_device;
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assert (out_identify != NULL);
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/* init results */
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ret = -1;
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memset (out_identify, '\0', 512);
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is_packet_device = 0;
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/* If we were to use ATA PASS_THROUGH (12) on an ATAPI device
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* we could accidentally blank media. This is because MMC's BLANK
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* command has the same op-code (0x61).
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*
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* To prevent this from happening we bail out if the device
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* isn't a Direct Access Block Device, e.g. SCSI type 0x00
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* (CD/DVD devices are type 0x05). So we send a SCSI INQUIRY
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* command first... libata is handling this via its SCSI
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* emulation layer.
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*
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* This also ensures that we're actually dealing with a device
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* that understands SCSI commands.
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*
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* (Yes, it is a bit perverse that we're tunneling the ATA
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* command through SCSI and relying on the ATA driver
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* emulating SCSI well-enough...)
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*
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* (See commit 160b069c25690bfb0c785994c7c3710289179107 for
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* the original bug-fix and see http://bugs.debian.org/cgi-bin/bugreport.cgi?bug=556635
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* for the original bug-report.)
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*/
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ret = disk_scsi_inquiry_command (fd, inquiry_buf, sizeof (inquiry_buf));
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if (ret != 0)
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goto out;
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/* SPC-4, section 6.4.2: Standard INQUIRY data */
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peripheral_device_type = inquiry_buf[0] & 0x1f;
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if (peripheral_device_type == 0x05)
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{
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is_packet_device = 1;
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ret = disk_identify_packet_device_command(fd, out_identify, 512);
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goto check_nul_bytes;
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}
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if (peripheral_device_type != 0x00) {
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ret = -1;
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errno = EIO;
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goto out;
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}
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/* OK, now issue the IDENTIFY DEVICE command */
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ret = disk_identify_command(fd, out_identify, 512);
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if (ret != 0)
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goto out;
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check_nul_bytes:
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/* Check if IDENTIFY data is all NUL bytes - if so, bail */
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all_nul_bytes = 1;
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for (n = 0; n < 512; n++) {
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if (out_identify[n] != '\0') {
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all_nul_bytes = 0;
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break;
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}
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}
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if (all_nul_bytes) {
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ret = -1;
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errno = EIO;
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goto out;
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}
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out:
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if (out_is_packet_device != NULL)
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*out_is_packet_device = is_packet_device;
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return ret;
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}
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static void log_fn(struct udev *udev, int priority,
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const char *file, int line, const char *fn,
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const char *format, va_list args)
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{
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vsyslog(priority, format, args);
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}
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int main(int argc, char *argv[])
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{
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struct udev *udev;
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struct hd_driveid id;
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uint8_t identify[512];
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char model[41];
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char model_enc[256];
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char serial[21];
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char revision[9];
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const char *node = NULL;
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int export = 0;
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int fd;
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uint16_t word;
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int rc = 0;
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int is_packet_device = 0;
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static const struct option options[] = {
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{ "export", no_argument, NULL, 'x' },
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{ "help", no_argument, NULL, 'h' },
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{}
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};
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udev = udev_new();
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if (udev == NULL)
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goto exit;
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udev_log_init("ata_id");
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udev_set_log_fn(udev, log_fn);
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while (1) {
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int option;
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option = getopt_long(argc, argv, "xh", options, NULL);
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if (option == -1)
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break;
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switch (option) {
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case 'x':
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export = 1;
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break;
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case 'h':
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|
printf("Usage: ata_id [--export] [--help] <device>\n"
|
|
" --export print values as environment keys\n"
|
|
" --help print this help text\n\n");
|
|
goto exit;
|
|
}
|
|
}
|
|
|
|
node = argv[optind];
|
|
if (node == NULL) {
|
|
err(udev, "no node specified\n");
|
|
rc = 1;
|
|
goto exit;
|
|
}
|
|
|
|
fd = open(node, O_RDONLY|O_NONBLOCK);
|
|
if (fd < 0) {
|
|
err(udev, "unable to open '%s'\n", node);
|
|
rc = 1;
|
|
goto exit;
|
|
}
|
|
|
|
if (disk_identify(udev, fd, identify, &is_packet_device) == 0) {
|
|
/*
|
|
* fix up only the fields from the IDENTIFY data that we are going to
|
|
* use and copy it into the hd_driveid struct for convenience
|
|
*/
|
|
disk_identify_fixup_string (identify, 10, 20); /* serial */
|
|
disk_identify_fixup_string (identify, 23, 6); /* fwrev */
|
|
disk_identify_fixup_string (identify, 27, 40); /* model */
|
|
disk_identify_fixup_uint16 (identify, 0); /* configuration */
|
|
disk_identify_fixup_uint16 (identify, 75); /* queue depth */
|
|
disk_identify_fixup_uint16 (identify, 75); /* SATA capabilities */
|
|
disk_identify_fixup_uint16 (identify, 82); /* command set supported */
|
|
disk_identify_fixup_uint16 (identify, 83); /* command set supported */
|
|
disk_identify_fixup_uint16 (identify, 84); /* command set supported */
|
|
disk_identify_fixup_uint16 (identify, 85); /* command set supported */
|
|
disk_identify_fixup_uint16 (identify, 86); /* command set supported */
|
|
disk_identify_fixup_uint16 (identify, 87); /* command set supported */
|
|
disk_identify_fixup_uint16 (identify, 89); /* time required for SECURITY ERASE UNIT */
|
|
disk_identify_fixup_uint16 (identify, 90); /* time required for enhanced SECURITY ERASE UNIT */
|
|
disk_identify_fixup_uint16 (identify, 91); /* current APM values */
|
|
disk_identify_fixup_uint16 (identify, 94); /* current AAM value */
|
|
disk_identify_fixup_uint16 (identify, 128); /* device lock function */
|
|
disk_identify_fixup_uint16 (identify, 217); /* nominal media rotation rate */
|
|
memcpy(&id, identify, sizeof id);
|
|
} else {
|
|
/* If this fails, then try HDIO_GET_IDENTITY */
|
|
if (ioctl(fd, HDIO_GET_IDENTITY, &id) != 0) {
|
|
if (errno == ENOTTY) {
|
|
info(udev, "HDIO_GET_IDENTITY unsupported for '%s'\n", node);
|
|
rc = 2;
|
|
} else {
|
|
err(udev, "HDIO_GET_IDENTITY failed for '%s'\n", node);
|
|
rc = 3;
|
|
}
|
|
goto close;
|
|
}
|
|
}
|
|
|
|
memcpy (model, id.model, 40);
|
|
model[40] = '\0';
|
|
udev_util_encode_string(model, model_enc, sizeof(model_enc));
|
|
udev_util_replace_whitespace((char *) id.model, model, 40);
|
|
udev_util_replace_chars(model, NULL);
|
|
udev_util_replace_whitespace((char *) id.serial_no, serial, 20);
|
|
udev_util_replace_chars(serial, NULL);
|
|
udev_util_replace_whitespace((char *) id.fw_rev, revision, 8);
|
|
udev_util_replace_chars(revision, NULL);
|
|
|
|
if (export) {
|
|
/* Set this to convey the disk speaks the ATA protocol */
|
|
printf("ID_ATA=1\n");
|
|
|
|
if ((id.config >> 8) & 0x80) {
|
|
/* This is an ATAPI device */
|
|
switch ((id.config >> 8) & 0x1f) {
|
|
case 0:
|
|
printf("ID_TYPE=cd\n");
|
|
break;
|
|
case 1:
|
|
printf("ID_TYPE=tape\n");
|
|
break;
|
|
case 5:
|
|
printf("ID_TYPE=cd\n");
|
|
break;
|
|
case 7:
|
|
printf("ID_TYPE=optical\n");
|
|
break;
|
|
default:
|
|
printf("ID_TYPE=generic\n");
|
|
break;
|
|
}
|
|
} else {
|
|
printf("ID_TYPE=disk\n");
|
|
}
|
|
printf("ID_BUS=ata\n");
|
|
printf("ID_MODEL=%s\n", model);
|
|
printf("ID_MODEL_ENC=%s\n", model_enc);
|
|
printf("ID_REVISION=%s\n", revision);
|
|
if (serial[0] != '\0') {
|
|
printf("ID_SERIAL=%s_%s\n", model, serial);
|
|
printf("ID_SERIAL_SHORT=%s\n", serial);
|
|
} else {
|
|
printf("ID_SERIAL=%s\n", model);
|
|
}
|
|
|
|
if (id.command_set_1 & (1<<5)) {
|
|
printf ("ID_ATA_WRITE_CACHE=1\n");
|
|
printf ("ID_ATA_WRITE_CACHE_ENABLED=%d\n", (id.cfs_enable_1 & (1<<5)) ? 1 : 0);
|
|
}
|
|
if (id.command_set_1 & (1<<10)) {
|
|
printf("ID_ATA_FEATURE_SET_HPA=1\n");
|
|
printf("ID_ATA_FEATURE_SET_HPA_ENABLED=%d\n", (id.cfs_enable_1 & (1<<10)) ? 1 : 0);
|
|
|
|
/*
|
|
* TODO: use the READ NATIVE MAX ADDRESS command to get the native max address
|
|
* so it is easy to check whether the protected area is in use.
|
|
*/
|
|
}
|
|
if (id.command_set_1 & (1<<3)) {
|
|
printf("ID_ATA_FEATURE_SET_PM=1\n");
|
|
printf("ID_ATA_FEATURE_SET_PM_ENABLED=%d\n", (id.cfs_enable_1 & (1<<3)) ? 1 : 0);
|
|
}
|
|
if (id.command_set_1 & (1<<1)) {
|
|
printf("ID_ATA_FEATURE_SET_SECURITY=1\n");
|
|
printf("ID_ATA_FEATURE_SET_SECURITY_ENABLED=%d\n", (id.cfs_enable_1 & (1<<1)) ? 1 : 0);
|
|
printf("ID_ATA_FEATURE_SET_SECURITY_ERASE_UNIT_MIN=%d\n", id.trseuc * 2);
|
|
if ((id.cfs_enable_1 & (1<<1))) /* enabled */ {
|
|
if (id.dlf & (1<<8))
|
|
printf("ID_ATA_FEATURE_SET_SECURITY_LEVEL=maximum\n");
|
|
else
|
|
printf("ID_ATA_FEATURE_SET_SECURITY_LEVEL=high\n");
|
|
}
|
|
if (id.dlf & (1<<5))
|
|
printf("ID_ATA_FEATURE_SET_SECURITY_ENHANCED_ERASE_UNIT_MIN=%d\n", id.trsEuc * 2);
|
|
if (id.dlf & (1<<4))
|
|
printf("ID_ATA_FEATURE_SET_SECURITY_EXPIRE=1\n");
|
|
if (id.dlf & (1<<3))
|
|
printf("ID_ATA_FEATURE_SET_SECURITY_FROZEN=1\n");
|
|
if (id.dlf & (1<<2))
|
|
printf("ID_ATA_FEATURE_SET_SECURITY_LOCKED=1\n");
|
|
}
|
|
if (id.command_set_1 & (1<<0)) {
|
|
printf("ID_ATA_FEATURE_SET_SMART=1\n");
|
|
printf("ID_ATA_FEATURE_SET_SMART_ENABLED=%d\n", (id.cfs_enable_1 & (1<<0)) ? 1 : 0);
|
|
}
|
|
if (id.command_set_2 & (1<<9)) {
|
|
printf("ID_ATA_FEATURE_SET_AAM=1\n");
|
|
printf("ID_ATA_FEATURE_SET_AAM_ENABLED=%d\n", (id.cfs_enable_2 & (1<<9)) ? 1 : 0);
|
|
printf("ID_ATA_FEATURE_SET_AAM_VENDOR_RECOMMENDED_VALUE=%d\n", id.acoustic >> 8);
|
|
printf("ID_ATA_FEATURE_SET_AAM_CURRENT_VALUE=%d\n", id.acoustic & 0xff);
|
|
}
|
|
if (id.command_set_2 & (1<<5)) {
|
|
printf("ID_ATA_FEATURE_SET_PUIS=1\n");
|
|
printf("ID_ATA_FEATURE_SET_PUIS_ENABLED=%d\n", (id.cfs_enable_2 & (1<<5)) ? 1 : 0);
|
|
}
|
|
if (id.command_set_2 & (1<<3)) {
|
|
printf("ID_ATA_FEATURE_SET_APM=1\n");
|
|
printf("ID_ATA_FEATURE_SET_APM_ENABLED=%d\n", (id.cfs_enable_2 & (1<<3)) ? 1 : 0);
|
|
if ((id.cfs_enable_2 & (1<<3)))
|
|
printf("ID_ATA_FEATURE_SET_APM_CURRENT_VALUE=%d\n", id.CurAPMvalues & 0xff);
|
|
}
|
|
if (id.command_set_2 & (1<<0))
|
|
printf("ID_ATA_DOWNLOAD_MICROCODE=1\n");
|
|
|
|
/*
|
|
* Word 76 indicates the capabilities of a SATA device. A PATA device shall set
|
|
* word 76 to 0000h or FFFFh. If word 76 is set to 0000h or FFFFh, then
|
|
* the device does not claim compliance with the Serial ATA specification and words
|
|
* 76 through 79 are not valid and shall be ignored.
|
|
*/
|
|
word = *((uint16_t *) identify + 76);
|
|
if (word != 0x0000 && word != 0xffff) {
|
|
printf("ID_ATA_SATA=1\n");
|
|
/*
|
|
* If bit 2 of word 76 is set to one, then the device supports the Gen2
|
|
* signaling rate of 3.0 Gb/s (see SATA 2.6).
|
|
*
|
|
* If bit 1 of word 76 is set to one, then the device supports the Gen1
|
|
* signaling rate of 1.5 Gb/s (see SATA 2.6).
|
|
*/
|
|
if (word & (1<<2))
|
|
printf("ID_ATA_SATA_SIGNAL_RATE_GEN2=1\n");
|
|
if (word & (1<<1))
|
|
printf("ID_ATA_SATA_SIGNAL_RATE_GEN1=1\n");
|
|
}
|
|
|
|
/* Word 217 indicates the nominal media rotation rate of the device */
|
|
word = *((uint16_t *) identify + 217);
|
|
if (word != 0x0000) {
|
|
if (word == 0x0001) {
|
|
printf ("ID_ATA_ROTATION_RATE_RPM=0\n"); /* non-rotating e.g. SSD */
|
|
} else if (word >= 0x0401 && word <= 0xfffe) {
|
|
printf ("ID_ATA_ROTATION_RATE_RPM=%d\n", word);
|
|
}
|
|
}
|
|
|
|
/*
|
|
* Words 108-111 contain a mandatory World Wide Name (WWN) in the NAA IEEE Registered identifier
|
|
* format. Word 108 bits (15:12) shall contain 5h, indicating that the naming authority is IEEE.
|
|
* All other values are reserved.
|
|
*/
|
|
word = *((uint16_t *) identify + 108);
|
|
if ((word & 0xf000) == 0x5000) {
|
|
uint64_t wwwn;
|
|
|
|
wwwn = *((uint16_t *) identify + 108);
|
|
wwwn <<= 16;
|
|
wwwn |= *((uint16_t *) identify + 109);
|
|
wwwn <<= 16;
|
|
wwwn |= *((uint16_t *) identify + 110);
|
|
wwwn <<= 16;
|
|
wwwn |= *((uint16_t *) identify + 111);
|
|
printf("ID_WWN=0x%llx\n", (unsigned long long int) wwwn);
|
|
/* ATA devices have no vendor extension */
|
|
printf("ID_WWN_WITH_EXTENSION=0x%llx\n", (unsigned long long int) wwwn);
|
|
}
|
|
} else {
|
|
if (serial[0] != '\0')
|
|
printf("%s_%s\n", model, serial);
|
|
else
|
|
printf("%s\n", model);
|
|
}
|
|
close:
|
|
close(fd);
|
|
exit:
|
|
udev_unref(udev);
|
|
udev_log_close();
|
|
return rc;
|
|
}
|