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1011 lines
35 KiB
C++
1011 lines
35 KiB
C++
/*
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* atacmds.h
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*
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* Home page of code is: http://smartmontools.sourceforge.net
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*
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* Copyright (C) 2002-11 Bruce Allen <smartmontools-support@lists.sourceforge.net>
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* Copyright (C) 2008-12 Christian Franke <smartmontools-support@lists.sourceforge.net>
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* Copyright (C) 1999-2000 Michael Cornwell <cornwell@acm.org>
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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, or (at your option)
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* any later version.
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*
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* You should have received a copy of the GNU General Public License
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* (for example COPYING); If not, see <http://www.gnu.org/licenses/>.
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*
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* This code was originally developed as a Senior Thesis by Michael Cornwell
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* at the Concurrent Systems Laboratory (now part of the Storage Systems
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* Research Center), Jack Baskin School of Engineering, University of
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* California, Santa Cruz. http://ssrc.soe.ucsc.edu/
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*
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*/
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#ifndef ATACMDS_H_
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#define ATACMDS_H_
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#define ATACMDS_H_CVSID "$Id: atacmds.h 3632 2012-10-09 10:10:53Z chrfranke $"
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#include "dev_interface.h" // ata_device
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// Macro to check expected size of struct at compile time using a
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// dummy typedef. On size mismatch, compiler reports a negative array
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// size. If you see an error message of this form, it means that the
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// #pragma pack(1) pragma below is not having the desired effect on
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// your compiler.
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#define ASSERT_SIZEOF_STRUCT(s, n) \
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typedef char assert_sizeof_struct_##s[(sizeof(struct s) == (n)) ? 1 : -1]
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// Add __attribute__((packed)) if compiler supports it
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// because some gcc versions (at least ARM) lack support of #pragma pack()
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#ifdef HAVE_ATTR_PACKED
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#define ATTR_PACKED __attribute__((packed))
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#else
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#define ATTR_PACKED
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#endif
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typedef enum {
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// returns no data, just succeeds or fails
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ENABLE,
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DISABLE,
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AUTOSAVE,
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IMMEDIATE_OFFLINE,
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AUTO_OFFLINE,
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STATUS, // just says if SMART is working or not
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STATUS_CHECK, // says if disk's SMART status is healthy, or failing
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// return 512 bytes of data:
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READ_VALUES,
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READ_THRESHOLDS,
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READ_LOG,
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IDENTIFY,
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PIDENTIFY,
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// returns 1 byte of data
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CHECK_POWER_MODE,
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// writes 512 bytes of data:
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WRITE_LOG
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} smart_command_set;
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// ATA Specification Command Register Values (Commands)
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#define ATA_CHECK_POWER_MODE 0xe5
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#define ATA_IDENTIFY_DEVICE 0xec
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#define ATA_IDENTIFY_PACKET_DEVICE 0xa1
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#define ATA_IDLE 0xe3
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#define ATA_SMART_CMD 0xb0
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#define ATA_SECURITY_FREEZE_LOCK 0xf5
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#define ATA_SET_FEATURES 0xef
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#define ATA_STANDBY_IMMEDIATE 0xe0
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// SET_FEATURES subcommands
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#define ATA_DISABLE_AAM 0xc2
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#define ATA_DISABLE_APM 0x85
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#define ATA_DISABLE_WRITE_CACHE 0x82
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#define ATA_DISABLE_READ_LOOK_AHEAD 0x55
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#define ATA_ENABLE_AAM 0x42
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#define ATA_ENABLE_APM 0x05
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#define ATA_ENABLE_WRITE_CACHE 0x02
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#define ATA_ENABLE_READ_LOOK_AHEAD 0xaa
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// 48-bit commands
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#define ATA_READ_LOG_EXT 0x2F
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// ATA Specification Feature Register Values (SMART Subcommands).
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// Note that some are obsolete as of ATA-7.
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#define ATA_SMART_READ_VALUES 0xd0
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#define ATA_SMART_READ_THRESHOLDS 0xd1
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#define ATA_SMART_AUTOSAVE 0xd2
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#define ATA_SMART_SAVE 0xd3
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#define ATA_SMART_IMMEDIATE_OFFLINE 0xd4
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#define ATA_SMART_READ_LOG_SECTOR 0xd5
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#define ATA_SMART_WRITE_LOG_SECTOR 0xd6
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#define ATA_SMART_WRITE_THRESHOLDS 0xd7
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#define ATA_SMART_ENABLE 0xd8
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#define ATA_SMART_DISABLE 0xd9
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#define ATA_SMART_STATUS 0xda
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// SFF 8035i Revision 2 Specification Feature Register Value (SMART
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// Subcommand)
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#define ATA_SMART_AUTO_OFFLINE 0xdb
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// Sector Number values for ATA_SMART_IMMEDIATE_OFFLINE Subcommand
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#define OFFLINE_FULL_SCAN 0
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#define SHORT_SELF_TEST 1
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#define EXTEND_SELF_TEST 2
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#define CONVEYANCE_SELF_TEST 3
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#define SELECTIVE_SELF_TEST 4
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#define ABORT_SELF_TEST 127
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#define SHORT_CAPTIVE_SELF_TEST 129
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#define EXTEND_CAPTIVE_SELF_TEST 130
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#define CONVEYANCE_CAPTIVE_SELF_TEST 131
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#define SELECTIVE_CAPTIVE_SELF_TEST 132
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#define CAPTIVE_MASK (0x01<<7)
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// Maximum allowed number of SMART Attributes
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#define NUMBER_ATA_SMART_ATTRIBUTES 30
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// Needed parts of the ATA DRIVE IDENTIFY Structure. Those labeled
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// word* are NOT used.
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#pragma pack(1)
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struct ata_identify_device {
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unsigned short words000_009[10];
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unsigned char serial_no[20];
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unsigned short words020_022[3];
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unsigned char fw_rev[8];
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unsigned char model[40];
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unsigned short words047_079[33];
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unsigned short major_rev_num;
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unsigned short minor_rev_num;
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unsigned short command_set_1;
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unsigned short command_set_2;
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unsigned short command_set_extension;
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unsigned short cfs_enable_1;
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unsigned short word086;
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unsigned short csf_default;
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unsigned short words088_255[168];
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_identify_device, 512);
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/* ata_smart_attribute is the vendor specific in SFF-8035 spec */
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#pragma pack(1)
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struct ata_smart_attribute {
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unsigned char id;
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// meaning of flag bits: see MACROS just below
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// WARNING: MISALIGNED!
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unsigned short flags;
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unsigned char current;
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unsigned char worst;
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unsigned char raw[6];
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unsigned char reserv;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_attribute, 12);
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// MACROS to interpret the flags bits in the previous structure.
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// These have not been implemented using bitflags and a union, to make
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// it portable across bit/little endian and different platforms.
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// 0: Prefailure bit
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// From SFF 8035i Revision 2 page 19: Bit 0 (pre-failure/advisory bit)
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// - If the value of this bit equals zero, an attribute value less
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// than or equal to its corresponding attribute threshold indicates an
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// advisory condition where the usage or age of the device has
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// exceeded its intended design life period. If the value of this bit
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// equals one, an attribute value less than or equal to its
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// corresponding attribute threshold indicates a prefailure condition
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// where imminent loss of data is being predicted.
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#define ATTRIBUTE_FLAGS_PREFAILURE(x) (x & 0x01)
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// 1: Online bit
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// From SFF 8035i Revision 2 page 19: Bit 1 (on-line data collection
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// bit) - If the value of this bit equals zero, then the attribute
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// value is updated only during off-line data collection
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// activities. If the value of this bit equals one, then the attribute
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// value is updated during normal operation of the device or during
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// both normal operation and off-line testing.
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#define ATTRIBUTE_FLAGS_ONLINE(x) (x & 0x02)
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// The following are (probably) IBM's, Maxtors and Quantum's definitions for the
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// vendor-specific bits:
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// 2: Performance type bit
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#define ATTRIBUTE_FLAGS_PERFORMANCE(x) (x & 0x04)
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// 3: Errorrate type bit
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#define ATTRIBUTE_FLAGS_ERRORRATE(x) (x & 0x08)
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// 4: Eventcount bit
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#define ATTRIBUTE_FLAGS_EVENTCOUNT(x) (x & 0x10)
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// 5: Selfpereserving bit
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#define ATTRIBUTE_FLAGS_SELFPRESERVING(x) (x & 0x20)
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// 6-15: Reserved for future use
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#define ATTRIBUTE_FLAGS_OTHER(x) ((x) & 0xffc0)
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// Format of data returned by SMART READ DATA
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// Table 62 of T13/1699-D (ATA8-ACS) Revision 6a, September 2008
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#pragma pack(1)
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struct ata_smart_values {
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unsigned short int revnumber;
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struct ata_smart_attribute vendor_attributes [NUMBER_ATA_SMART_ATTRIBUTES];
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unsigned char offline_data_collection_status;
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unsigned char self_test_exec_status; //IBM # segments for offline collection
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unsigned short int total_time_to_complete_off_line; // IBM different
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unsigned char vendor_specific_366; // Maxtor & IBM curent segment pointer
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unsigned char offline_data_collection_capability;
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unsigned short int smart_capability;
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unsigned char errorlog_capability;
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unsigned char vendor_specific_371; // Maxtor, IBM: self-test failure checkpoint see below!
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unsigned char short_test_completion_time;
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unsigned char extend_test_completion_time_b; // If 0xff, use 16-bit value below
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unsigned char conveyance_test_completion_time;
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unsigned short extend_test_completion_time_w; // e04130r2, added to T13/1699-D Revision 1c, April 2005
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unsigned char reserved_377_385[9];
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unsigned char vendor_specific_386_510[125]; // Maxtor bytes 508-509 Attribute/Threshold Revision #
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unsigned char chksum;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_values, 512);
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/* Maxtor, IBM: self-test failure checkpoint byte meaning:
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00 - write test
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01 - servo basic
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02 - servo random
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03 - G-list scan
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04 - Handling damage
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05 - Read scan
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*/
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/* Vendor attribute of SMART Threshold (compare to ata_smart_attribute above) */
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#pragma pack(1)
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struct ata_smart_threshold_entry {
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unsigned char id;
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unsigned char threshold;
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unsigned char reserved[10];
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_threshold_entry, 12);
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/* Format of Read SMART THreshold Command */
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/* Compare to ata_smart_values above */
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#pragma pack(1)
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struct ata_smart_thresholds_pvt {
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unsigned short int revnumber;
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struct ata_smart_threshold_entry thres_entries[NUMBER_ATA_SMART_ATTRIBUTES];
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unsigned char reserved[149];
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unsigned char chksum;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_thresholds_pvt, 512);
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// Table 42 of T13/1321D Rev 1 spec (Error Data Structure)
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#pragma pack(1)
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struct ata_smart_errorlog_error_struct {
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unsigned char reserved;
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unsigned char error_register;
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unsigned char sector_count;
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unsigned char sector_number;
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unsigned char cylinder_low;
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unsigned char cylinder_high;
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unsigned char drive_head;
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unsigned char status;
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unsigned char extended_error[19];
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unsigned char state;
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unsigned short timestamp;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_errorlog_error_struct, 30);
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// Table 41 of T13/1321D Rev 1 spec (Command Data Structure)
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#pragma pack(1)
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struct ata_smart_errorlog_command_struct {
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unsigned char devicecontrolreg;
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unsigned char featuresreg;
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unsigned char sector_count;
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unsigned char sector_number;
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unsigned char cylinder_low;
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unsigned char cylinder_high;
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unsigned char drive_head;
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unsigned char commandreg;
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unsigned int timestamp;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_errorlog_command_struct, 12);
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// Table 40 of T13/1321D Rev 1 spec (Error log data structure)
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#pragma pack(1)
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struct ata_smart_errorlog_struct {
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struct ata_smart_errorlog_command_struct commands[5];
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struct ata_smart_errorlog_error_struct error_struct;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_errorlog_struct, 90);
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// Table 39 of T13/1321D Rev 1 spec (SMART error log sector)
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#pragma pack(1)
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struct ata_smart_errorlog {
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unsigned char revnumber;
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unsigned char error_log_pointer;
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struct ata_smart_errorlog_struct errorlog_struct[5];
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unsigned short int ata_error_count;
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unsigned char reserved[57];
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unsigned char checksum;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_errorlog, 512);
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// Extended Comprehensive SMART Error Log data structures
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// See Section A.7 of
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// AT Attachment 8 - ATA/ATAPI Command Set (ATA8-ACS)
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// T13/1699-D Revision 6a (Working Draft), September 6, 2008.
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// Command data structure
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// Table A.9 of T13/1699-D Revision 6a
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#pragma pack(1)
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struct ata_smart_exterrlog_command
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{
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unsigned char device_control_register;
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unsigned char features_register;
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unsigned char features_register_hi;
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unsigned char count_register;
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unsigned char count_register_hi;
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unsigned char lba_low_register;
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unsigned char lba_low_register_hi;
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unsigned char lba_mid_register;
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unsigned char lba_mid_register_hi;
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unsigned char lba_high_register;
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unsigned char lba_high_register_hi;
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unsigned char device_register;
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unsigned char command_register;
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unsigned char reserved;
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unsigned int timestamp;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_exterrlog_command, 18);
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// Error data structure
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// Table A.10 T13/1699-D Revision 6a
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#pragma pack(1)
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struct ata_smart_exterrlog_error
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{
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unsigned char device_control_register;
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unsigned char error_register;
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unsigned char count_register;
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unsigned char count_register_hi;
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unsigned char lba_low_register;
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unsigned char lba_low_register_hi;
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unsigned char lba_mid_register;
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unsigned char lba_mid_register_hi;
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unsigned char lba_high_register;
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unsigned char lba_high_register_hi;
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unsigned char device_register;
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unsigned char status_register;
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unsigned char extended_error[19];
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unsigned char state;
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unsigned short timestamp;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_exterrlog_error, 34);
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// Error log data structure
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// Table A.8 of T13/1699-D Revision 6a
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#pragma pack(1)
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struct ata_smart_exterrlog_error_log
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{
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ata_smart_exterrlog_command commands[5];
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ata_smart_exterrlog_error error;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_exterrlog_error_log, 124);
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// Ext. Comprehensive SMART error log
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// Table A.7 of T13/1699-D Revision 6a
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#pragma pack(1)
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struct ata_smart_exterrlog
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{
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unsigned char version;
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unsigned char reserved1;
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unsigned short error_log_index;
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ata_smart_exterrlog_error_log error_logs[4];
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unsigned short device_error_count;
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unsigned char reserved2[9];
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unsigned char checksum;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_exterrlog, 512);
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// Table 45 of T13/1321D Rev 1 spec (Self-test log descriptor entry)
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#pragma pack(1)
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struct ata_smart_selftestlog_struct {
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unsigned char selftestnumber; // Sector number register
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unsigned char selfteststatus;
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unsigned short int timestamp;
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unsigned char selftestfailurecheckpoint;
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unsigned int lbafirstfailure;
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unsigned char vendorspecific[15];
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_selftestlog_struct, 24);
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// Table 44 of T13/1321D Rev 1 spec (Self-test log data structure)
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#pragma pack(1)
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struct ata_smart_selftestlog {
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unsigned short int revnumber;
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struct ata_smart_selftestlog_struct selftest_struct[21];
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unsigned char vendorspecific[2];
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unsigned char mostrecenttest;
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unsigned char reserved[2];
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unsigned char chksum;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_selftestlog, 512);
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// Extended SMART Self-test log data structures
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// See Section A.8 of
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// AT Attachment 8 - ATA/ATAPI Command Set (ATA8-ACS)
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// T13/1699-D Revision 6a (Working Draft), September 6, 2008.
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// Extended Self-test log descriptor entry
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// Table A.13 of T13/1699-D Revision 6a
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#pragma pack(1)
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struct ata_smart_extselftestlog_desc
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{
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unsigned char self_test_type;
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unsigned char self_test_status;
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unsigned short timestamp;
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unsigned char checkpoint;
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unsigned char failing_lba[6];
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unsigned char vendorspecific[15];
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_extselftestlog_desc, 26);
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// Extended Self-test log data structure
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// Table A.12 of T13/1699-D Revision 6a
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#pragma pack(1)
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struct ata_smart_extselftestlog
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{
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unsigned char version;
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unsigned char reserved1;
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unsigned short log_desc_index;
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struct ata_smart_extselftestlog_desc log_descs[19];
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unsigned char vendor_specifc[2];
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unsigned char reserved2[11];
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unsigned char chksum;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_extselftestlog, 512);
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// SMART LOG DIRECTORY Table 52 of T13/1532D Vol 1 Rev 1a
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#pragma pack(1)
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struct ata_smart_log_entry {
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unsigned char numsectors;
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unsigned char reserved;
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} ATTR_PACKED;
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#pragma pack()
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ASSERT_SIZEOF_STRUCT(ata_smart_log_entry, 2);
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#pragma pack(1)
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struct ata_smart_log_directory {
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unsigned short int logversion;
|
|
struct ata_smart_log_entry entry[255];
|
|
} ATTR_PACKED;
|
|
#pragma pack()
|
|
ASSERT_SIZEOF_STRUCT(ata_smart_log_directory, 512);
|
|
|
|
// SMART SELECTIVE SELF-TEST LOG Table 61 of T13/1532D Volume 1
|
|
// Revision 3
|
|
#pragma pack(1)
|
|
struct test_span {
|
|
uint64_t start;
|
|
uint64_t end;
|
|
} ATTR_PACKED;
|
|
#pragma pack()
|
|
ASSERT_SIZEOF_STRUCT(test_span, 16);
|
|
|
|
#pragma pack(1)
|
|
struct ata_selective_self_test_log {
|
|
unsigned short logversion;
|
|
struct test_span span[5];
|
|
unsigned char reserved1[337-82+1];
|
|
unsigned char vendor_specific1[491-338+1];
|
|
uint64_t currentlba;
|
|
unsigned short currentspan;
|
|
unsigned short flags;
|
|
unsigned char vendor_specific2[507-504+1];
|
|
unsigned short pendingtime;
|
|
unsigned char reserved2;
|
|
unsigned char checksum;
|
|
} ATTR_PACKED;
|
|
#pragma pack()
|
|
ASSERT_SIZEOF_STRUCT(ata_selective_self_test_log, 512);
|
|
|
|
#define SELECTIVE_FLAG_DOSCAN (0x0002)
|
|
#define SELECTIVE_FLAG_PENDING (0x0008)
|
|
#define SELECTIVE_FLAG_ACTIVE (0x0010)
|
|
|
|
|
|
// SCT (SMART Command Transport) data structures
|
|
// See Sections 8.2 and 8.3 of:
|
|
// AT Attachment 8 - ATA/ATAPI Command Set (ATA8-ACS)
|
|
// T13/1699-D Revision 3f (Working Draft), December 11, 2006.
|
|
|
|
// SCT Status response (read with SMART_READ_LOG page 0xe0)
|
|
// Table 60 of T13/1699-D Revision 3f
|
|
#pragma pack(1)
|
|
struct ata_sct_status_response
|
|
{
|
|
unsigned short format_version; // 0-1: Status response format version number (2, 3)
|
|
unsigned short sct_version; // 2-3: Vendor specific version number
|
|
unsigned short sct_spec; // 4-5: SCT level supported (1)
|
|
unsigned int status_flags; // 6-9: Status flags (Bit 0: Segment initialized, Bits 1-31: reserved)
|
|
unsigned char device_state; // 10: Device State (0-5)
|
|
unsigned char bytes011_013[3]; // 11-13: reserved
|
|
unsigned short ext_status_code; // 14-15: Status of last SCT command (0xffff if executing)
|
|
unsigned short action_code; // 16-17: Action code of last SCT command
|
|
unsigned short function_code; // 18-19: Function code of last SCT command
|
|
unsigned char bytes020_039[20]; // 20-39: reserved
|
|
uint64_t lba_current; // 40-47: LBA of SCT command executing in background
|
|
unsigned char bytes048_199[152]; // 48-199: reserved
|
|
signed char hda_temp; // 200: Current temperature in Celsius (0x80 = invalid)
|
|
signed char min_temp; // 201: Minimum temperature this power cycle
|
|
signed char max_temp; // 202: Maximum temperature this power cycle
|
|
signed char life_min_temp; // 203: Minimum lifetime temperature
|
|
signed char life_max_temp; // 204: Maximum lifetime temperature
|
|
unsigned char byte205; // 205: reserved (T13/e06152r0-2: Average lifetime temperature)
|
|
unsigned int over_limit_count; // 206-209: # intervals since last reset with temperature > Max Op Limit
|
|
unsigned int under_limit_count; // 210-213: # intervals since last reset with temperature < Min Op Limit
|
|
unsigned char bytes214_479[266]; // 214-479: reserved
|
|
unsigned char vendor_specific[32];// 480-511: vendor specific
|
|
} ATTR_PACKED;
|
|
#pragma pack()
|
|
ASSERT_SIZEOF_STRUCT(ata_sct_status_response, 512);
|
|
|
|
// SCT Error Recovery Control command (send with SMART_WRITE_LOG page 0xe0)
|
|
// Table 88 of T13/1699-D Revision 6a
|
|
#pragma pack(1)
|
|
struct ata_sct_error_recovery_control_command
|
|
{
|
|
unsigned short action_code; // 3 = Error Recovery Control
|
|
unsigned short function_code; // 1 = Set, 2 = Return
|
|
unsigned short selection_code; // 1 = Read Timer, 2 = Write Timer
|
|
unsigned short time_limit; // If set: Recovery time limit in 100ms units
|
|
unsigned short words004_255[252]; // reserved
|
|
} ATTR_PACKED;
|
|
#pragma pack()
|
|
ASSERT_SIZEOF_STRUCT(ata_sct_error_recovery_control_command, 512);
|
|
|
|
// SCT Feature Control command (send with SMART_WRITE_LOG page 0xe0)
|
|
// Table 72 of T13/1699-D Revision 3f
|
|
#pragma pack(1)
|
|
struct ata_sct_feature_control_command
|
|
{
|
|
unsigned short action_code; // 4 = Feature Control
|
|
unsigned short function_code; // 1 = Set, 2 = Return, 3 = Return options
|
|
unsigned short feature_code; // 3 = Temperature logging interval
|
|
unsigned short state; // Interval
|
|
unsigned short option_flags; // Bit 0: persistent, Bits 1-15: reserved
|
|
unsigned short words005_255[251]; // reserved
|
|
} ATTR_PACKED;
|
|
#pragma pack()
|
|
ASSERT_SIZEOF_STRUCT(ata_sct_feature_control_command, 512);
|
|
|
|
// SCT Data Table command (send with SMART_WRITE_LOG page 0xe0)
|
|
// Table 73 of T13/1699-D Revision 3f
|
|
#pragma pack(1)
|
|
struct ata_sct_data_table_command
|
|
{
|
|
unsigned short action_code; // 5 = Data Table
|
|
unsigned short function_code; // 1 = Read Table
|
|
unsigned short table_id; // 2 = Temperature History
|
|
unsigned short words003_255[253]; // reserved
|
|
} ATTR_PACKED;
|
|
#pragma pack()
|
|
ASSERT_SIZEOF_STRUCT(ata_sct_data_table_command, 512);
|
|
|
|
// SCT Temperature History Table (read with SMART_READ_LOG page 0xe1)
|
|
// Table 75 of T13/1699-D Revision 3f
|
|
#pragma pack(1)
|
|
struct ata_sct_temperature_history_table
|
|
{
|
|
unsigned short format_version; // 0-1: Data table format version number (2)
|
|
unsigned short sampling_period; // 2-3: Temperature sampling period in minutes
|
|
unsigned short interval; // 4-5: Timer interval between history entries
|
|
signed char max_op_limit; // 6: Maximum recommended continuous operating temperature
|
|
signed char over_limit; // 7: Maximum temperature limit
|
|
signed char min_op_limit; // 8: Minimum recommended continuous operating limit
|
|
signed char under_limit; // 9: Minimum temperature limit
|
|
unsigned char bytes010_029[20]; // 10-29: reserved
|
|
unsigned short cb_size; // 30-31: Number of history entries (range 128-478)
|
|
unsigned short cb_index; // 32-33: Index of last updated entry (zero-based)
|
|
signed char cb[478]; // 34-(34+cb_size-1): Circular buffer of temperature values
|
|
} ATTR_PACKED;
|
|
#pragma pack()
|
|
ASSERT_SIZEOF_STRUCT(ata_sct_temperature_history_table, 512);
|
|
|
|
// Possible values for span_args.mode
|
|
enum {
|
|
SEL_RANGE, // MIN-MAX
|
|
SEL_REDO, // redo this
|
|
SEL_NEXT, // do next range
|
|
SEL_CONT // redo or next depending of last test status
|
|
};
|
|
|
|
// Arguments for selective self-test
|
|
struct ata_selective_selftest_args
|
|
{
|
|
// Arguments for each span
|
|
struct span_args
|
|
{
|
|
uint64_t start; // First block
|
|
uint64_t end; // Last block
|
|
int mode; // SEL_*, see above
|
|
|
|
span_args()
|
|
: start(0), end(0), mode(SEL_RANGE) { }
|
|
};
|
|
|
|
span_args span[5]; // Range and mode for 5 spans
|
|
int num_spans; // Number of spans
|
|
int pending_time; // One plus time in minutes to wait after powerup before restarting
|
|
// interrupted offline scan after selective self-test.
|
|
int scan_after_select; // Run offline scan after selective self-test:
|
|
// 0: don't change,
|
|
// 1: turn off scan after selective self-test,
|
|
// 2: turn on scan after selective self-test.
|
|
|
|
ata_selective_selftest_args()
|
|
: num_spans(0), pending_time(0), scan_after_select(0) { }
|
|
};
|
|
|
|
// Priority for vendor attribute defs
|
|
enum ata_vendor_def_prior
|
|
{
|
|
PRIOR_DEFAULT,
|
|
PRIOR_DATABASE,
|
|
PRIOR_USER
|
|
};
|
|
|
|
// Raw attribute value print formats
|
|
enum ata_attr_raw_format
|
|
{
|
|
RAWFMT_DEFAULT,
|
|
RAWFMT_RAW8,
|
|
RAWFMT_RAW16,
|
|
RAWFMT_RAW48,
|
|
RAWFMT_HEX48,
|
|
RAWFMT_RAW56,
|
|
RAWFMT_HEX56,
|
|
RAWFMT_RAW64,
|
|
RAWFMT_HEX64,
|
|
RAWFMT_RAW16_OPT_RAW16,
|
|
RAWFMT_RAW16_OPT_AVG16,
|
|
RAWFMT_RAW24_OPT_RAW8,
|
|
RAWFMT_RAW24_DIV_RAW24,
|
|
RAWFMT_RAW24_DIV_RAW32,
|
|
RAWFMT_SEC2HOUR,
|
|
RAWFMT_MIN2HOUR,
|
|
RAWFMT_HALFMIN2HOUR,
|
|
RAWFMT_MSEC24_HOUR32,
|
|
RAWFMT_TEMPMINMAX,
|
|
RAWFMT_TEMP10X,
|
|
};
|
|
|
|
// Attribute flags
|
|
enum {
|
|
ATTRFLAG_INCREASING = 0x01, // Value not reset (for reallocated/pending counts)
|
|
ATTRFLAG_NO_NORMVAL = 0x02, // Normalized value not valid
|
|
ATTRFLAG_NO_WORSTVAL = 0x04 // Worst value not valid
|
|
};
|
|
|
|
// Vendor attribute display defs for all attribute ids
|
|
class ata_vendor_attr_defs
|
|
{
|
|
public:
|
|
struct entry
|
|
{
|
|
std::string name; // Attribute name, empty for default
|
|
ata_attr_raw_format raw_format; // Raw value print format
|
|
ata_vendor_def_prior priority; // Setting priority
|
|
unsigned flags; // ATTRFLAG_*
|
|
char byteorder[8+1]; // String [012345rvwz] to define byte order
|
|
|
|
entry()
|
|
: raw_format(RAWFMT_DEFAULT),
|
|
priority(PRIOR_DEFAULT),
|
|
flags(0)
|
|
{ byteorder[0] = 0; }
|
|
};
|
|
|
|
entry & operator[](unsigned char id)
|
|
{ return m_defs[id]; }
|
|
|
|
const entry & operator[](unsigned char id) const
|
|
{ return m_defs[id]; }
|
|
|
|
private:
|
|
entry m_defs[256];
|
|
};
|
|
|
|
|
|
// Possible values for firmwarebugs
|
|
enum firmwarebug_t {
|
|
BUG_NONE = 0,
|
|
BUG_NOLOGDIR,
|
|
BUG_SAMSUNG,
|
|
BUG_SAMSUNG2,
|
|
BUG_SAMSUNG3,
|
|
BUG_XERRORLBA
|
|
};
|
|
|
|
// Set of firmware bugs
|
|
class firmwarebug_defs
|
|
{
|
|
public:
|
|
firmwarebug_defs()
|
|
: m_bugs(0) { }
|
|
|
|
bool is_set(firmwarebug_t bug) const
|
|
{ return !!(m_bugs & (1 << bug)); }
|
|
|
|
void set(firmwarebug_t bug)
|
|
{ m_bugs |= (1 << bug); }
|
|
|
|
void set(firmwarebug_defs bugs)
|
|
{ m_bugs |= bugs.m_bugs; }
|
|
|
|
private:
|
|
unsigned m_bugs;
|
|
};
|
|
|
|
|
|
// Print ATA debug messages?
|
|
extern unsigned char ata_debugmode;
|
|
|
|
// Suppress serial number?
|
|
extern bool dont_print_serial_number;
|
|
|
|
// Get information from drive
|
|
int ata_read_identity(ata_device * device, ata_identify_device * buf, bool fix_swapped_id,
|
|
unsigned char * raw_buf = 0);
|
|
int ataCheckPowerMode(ata_device * device);
|
|
|
|
// Issue a no-data ATA command with optional sector count register value
|
|
bool ata_nodata_command(ata_device * device, unsigned char command, int sector_count = -1);
|
|
|
|
// Issue SET FEATURES command with optional sector count register value
|
|
bool ata_set_features(ata_device * device, unsigned char features, int sector_count = -1);
|
|
|
|
/* Read S.M.A.R.T information from drive */
|
|
int ataReadSmartValues(ata_device * device,struct ata_smart_values *);
|
|
int ataReadSmartThresholds(ata_device * device, struct ata_smart_thresholds_pvt *);
|
|
int ataReadErrorLog (ata_device * device, ata_smart_errorlog *data,
|
|
firmwarebug_defs firmwarebugs);
|
|
int ataReadSelfTestLog(ata_device * device, ata_smart_selftestlog * data,
|
|
firmwarebug_defs firmwarebugs);
|
|
int ataReadSelectiveSelfTestLog(ata_device * device, struct ata_selective_self_test_log *data);
|
|
int ataReadLogDirectory(ata_device * device, ata_smart_log_directory *, bool gpl);
|
|
|
|
// Read GP Log page(s)
|
|
bool ataReadLogExt(ata_device * device, unsigned char logaddr,
|
|
unsigned char features, unsigned page,
|
|
void * data, unsigned nsectors);
|
|
// Read SMART Log page(s)
|
|
bool ataReadSmartLog(ata_device * device, unsigned char logaddr,
|
|
void * data, unsigned nsectors);
|
|
// Read SMART Extended Comprehensive Error Log
|
|
bool ataReadExtErrorLog(ata_device * device, ata_smart_exterrlog * log,
|
|
unsigned nsectors, firmwarebug_defs firwarebugs);
|
|
// Read SMART Extended Self-test Log
|
|
bool ataReadExtSelfTestLog(ata_device * device, ata_smart_extselftestlog * log,
|
|
unsigned nsectors);
|
|
|
|
// Read SCT information
|
|
int ataReadSCTStatus(ata_device * device, ata_sct_status_response * sts);
|
|
int ataReadSCTTempHist(ata_device * device, ata_sct_temperature_history_table * tmh,
|
|
ata_sct_status_response * sts);
|
|
// Set SCT temperature logging interval
|
|
int ataSetSCTTempInterval(ata_device * device, unsigned interval, bool persistent);
|
|
|
|
// Get/Set SCT Error Recovery Control
|
|
int ataGetSCTErrorRecoveryControltime(ata_device * device, unsigned type, unsigned short & time_limit);
|
|
int ataSetSCTErrorRecoveryControltime(ata_device * device, unsigned type, unsigned short time_limit);
|
|
|
|
|
|
/* Enable/Disable SMART on device */
|
|
int ataEnableSmart (ata_device * device);
|
|
int ataDisableSmart (ata_device * device);
|
|
int ataEnableAutoSave(ata_device * device);
|
|
int ataDisableAutoSave(ata_device * device);
|
|
|
|
/* Automatic Offline Testing */
|
|
int ataEnableAutoOffline (ata_device * device);
|
|
int ataDisableAutoOffline (ata_device * device);
|
|
|
|
/* S.M.A.R.T. test commands */
|
|
int ataSmartTest(ata_device * device, int testtype, bool force,
|
|
const ata_selective_selftest_args & args,
|
|
const ata_smart_values * sv, uint64_t num_sectors);
|
|
|
|
int ataWriteSelectiveSelfTestLog(ata_device * device, ata_selective_selftest_args & args,
|
|
const ata_smart_values * sv, uint64_t num_sectors,
|
|
const ata_selective_selftest_args * prev_spans = 0);
|
|
|
|
// Get World Wide Name (WWN) fields.
|
|
// Return NAA field or -1 if WWN is unsupported.
|
|
int ata_get_wwn(const ata_identify_device * id, unsigned & oui, uint64_t & unique_id);
|
|
|
|
// Get nominal media rotation rate.
|
|
// Returns: 0 = not reported, 1 = SSD, >1 = HDD rpm, < 0 = -(Unknown value)
|
|
int ata_get_rotation_rate(const ata_identify_device * id);
|
|
|
|
// If SMART supported, this is guaranteed to return 1 if SMART is enabled, else 0.
|
|
int ataDoesSmartWork(ata_device * device);
|
|
|
|
// returns 1 if SMART supported, 0 if not supported or can't tell
|
|
int ataSmartSupport(const ata_identify_device * drive);
|
|
|
|
// Return values:
|
|
// 1: SMART enabled
|
|
// 0: SMART disabled
|
|
// -1: can't tell if SMART is enabled -- try issuing ataDoesSmartWork command to see
|
|
int ataIsSmartEnabled(const ata_identify_device * drive);
|
|
|
|
int ataSmartStatus2(ata_device * device);
|
|
|
|
int isSmartErrorLogCapable(const ata_smart_values * data, const ata_identify_device * identity);
|
|
|
|
int isSmartTestLogCapable(const ata_smart_values * data, const ata_identify_device * identity);
|
|
|
|
int isGeneralPurposeLoggingCapable(const ata_identify_device * identity);
|
|
|
|
int isSupportExecuteOfflineImmediate(const ata_smart_values * data);
|
|
|
|
int isSupportAutomaticTimer(const ata_smart_values * data);
|
|
|
|
int isSupportOfflineAbort(const ata_smart_values * data);
|
|
|
|
int isSupportOfflineSurfaceScan(const ata_smart_values * data);
|
|
|
|
int isSupportSelfTest(const ata_smart_values * data);
|
|
|
|
int isSupportConveyanceSelfTest(const ata_smart_values * data);
|
|
|
|
int isSupportSelectiveSelfTest(const ata_smart_values * data);
|
|
|
|
inline bool isSCTCapable(const ata_identify_device *drive)
|
|
{ return !!(drive->words088_255[206-88] & 0x01); } // 0x01 = SCT support
|
|
|
|
inline bool isSCTErrorRecoveryControlCapable(const ata_identify_device *drive)
|
|
{ return ((drive->words088_255[206-88] & 0x09) == 0x09); } // 0x08 = SCT Error Recovery Control support
|
|
|
|
inline bool isSCTFeatureControlCapable(const ata_identify_device *drive)
|
|
{ return ((drive->words088_255[206-88] & 0x11) == 0x11); } // 0x10 = SCT Feature Control support
|
|
|
|
inline bool isSCTDataTableCapable(const ata_identify_device *drive)
|
|
{ return ((drive->words088_255[206-88] & 0x21) == 0x21); } // 0x20 = SCT Data Table support
|
|
|
|
int TestTime(const ata_smart_values * data, int testtype);
|
|
|
|
// Attribute state
|
|
enum ata_attr_state
|
|
{
|
|
ATTRSTATE_NON_EXISTING, // No such Attribute
|
|
ATTRSTATE_NO_NORMVAL, // Normalized value not valid
|
|
ATTRSTATE_NO_THRESHOLD, // Unknown or no threshold
|
|
ATTRSTATE_OK, // Never failed
|
|
ATTRSTATE_FAILED_PAST, // Failed in the past
|
|
ATTRSTATE_FAILED_NOW // Failed now
|
|
};
|
|
|
|
// Get attribute state
|
|
ata_attr_state ata_get_attr_state(const ata_smart_attribute & attr,
|
|
int attridx,
|
|
const ata_smart_threshold_entry * thresholds,
|
|
const ata_vendor_attr_defs & defs,
|
|
unsigned char * threshval = 0);
|
|
|
|
// Get attribute raw value.
|
|
uint64_t ata_get_attr_raw_value(const ata_smart_attribute & attr,
|
|
const ata_vendor_attr_defs & defs);
|
|
|
|
// Format attribute raw value.
|
|
std::string ata_format_attr_raw_value(const ata_smart_attribute & attr,
|
|
const ata_vendor_attr_defs & defs);
|
|
|
|
// Get attribute name
|
|
std::string ata_get_smart_attr_name(unsigned char id,
|
|
const ata_vendor_attr_defs & defs,
|
|
int rpm = 0);
|
|
|
|
// External handler function, for when a checksum is not correct. Can
|
|
// simply return if no action is desired, or can print error messages
|
|
// as needed, or exit. Is passed a string with the name of the Data
|
|
// Structure with the incorrect checksum.
|
|
void checksumwarning(const char *string);
|
|
|
|
// Find attribute index for attribute id, -1 if not found.
|
|
int ata_find_attr_index(unsigned char id, const ata_smart_values & smartval);
|
|
|
|
// Return Temperature Attribute raw value selected according to possible
|
|
// non-default interpretations. If the Attribute does not exist, return 0
|
|
unsigned char ata_return_temperature_value(const ata_smart_values * data, const ata_vendor_attr_defs & defs);
|
|
|
|
|
|
#define MAX_ATTRIBUTE_NUM 256
|
|
|
|
// Parse vendor attribute display def (-v option).
|
|
// Return false on error.
|
|
bool parse_attribute_def(const char * opt, ata_vendor_attr_defs & defs,
|
|
ata_vendor_def_prior priority);
|
|
|
|
// Get ID and increase flag of current pending or offline
|
|
// uncorrectable attribute.
|
|
unsigned char get_unc_attr_id(bool offline, const ata_vendor_attr_defs & defs,
|
|
bool & increase);
|
|
|
|
// Return a multiline string containing a list of valid arguments for
|
|
// parse_attribute_def().
|
|
std::string create_vendor_attribute_arg_list();
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// Parse firmwarebug def (-F option).
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// Return false on error.
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bool parse_firmwarebug_def(const char * opt, firmwarebug_defs & firmwarebugs);
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// Return a string of valid argument words for parse_firmwarebug_def()
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const char * get_valid_firmwarebug_args();
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// These are two of the functions that are defined in os_*.c and need
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// to be ported to get smartmontools onto another OS.
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// Moved to C++ interface
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//int ata_command_interface(int device, smart_command_set command, int select, char *data);
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//int escalade_command_interface(int fd, int escalade_port, int escalade_type, smart_command_set command, int select, char *data);
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//int marvell_command_interface(int device, smart_command_set command, int select, char *data);
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//int highpoint_command_interface(int device, smart_command_set command, int select, char *data);
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//int areca_command_interface(int fd, int disknum, smart_command_set command, int select, char *data);
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// This function is exported to give low-level capability
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int smartcommandhandler(ata_device * device, smart_command_set command, int select, char *data);
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// Print one self-test log entry.
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// Returns:
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// -1: failed self-test
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// 1: extended self-test completed without error
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// 0: otherwise
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int ataPrintSmartSelfTestEntry(unsigned testnum, unsigned char test_type,
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unsigned char test_status,
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unsigned short timestamp,
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uint64_t failing_lba,
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bool print_error_only, bool & print_header);
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// Print Smart self-test log, used by smartctl and smartd.
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int ataPrintSmartSelfTestlog(const ata_smart_selftestlog * data, bool allentries,
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firmwarebug_defs firmwarebugs);
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// Get capacity and sector sizes from IDENTIFY data
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struct ata_size_info
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{
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uint64_t sectors;
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uint64_t capacity;
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unsigned log_sector_size;
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unsigned phy_sector_size;
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unsigned log_sector_offset;
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};
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void ata_get_size_info(const ata_identify_device * id, ata_size_info & sizes);
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// Convenience function for formatting strings from ata_identify_device.
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void ata_format_id_string(char * out, const unsigned char * in, int n);
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// Utility routines.
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unsigned char checksum(const void * data);
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void swap2(char *location);
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void swap4(char *location);
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void swap8(char *location);
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// Typesafe variants using overloading
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inline void swapx(unsigned short * p)
|
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{ swap2((char*)p); }
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inline void swapx(unsigned int * p)
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{ swap4((char*)p); }
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inline void swapx(uint64_t * p)
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{ swap8((char*)p); }
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// Return pseudo-device to parse "smartctl -r ataioctl,2 ..." output
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// and simulate an ATA device with same behaviour
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ata_device * get_parsed_ata_device(smart_interface * intf, const char * dev_name);
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#endif /* ATACMDS_H_ */
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