|
回复:7200.11 320G的盘技术进来帮看下怎么搞
Interface task reset9 m. E! u" O' l, P
1024k x 16 buffer detected 5 ?* r9 ?& |% C' w) y: {
ALPINE - 1_Disk M-21 11-25-03 18:53
5 K8 [3 M5 l" x) `' R- O5 nBuzz - Head Mask FFFF - Switch to full int.' O* e) ~/ a1 H
Spin Ready
8 T Z- {# M3 [4 {- A9.51 03-24-04 08:272 u& v% F6 C0 g" b8 t# G% E
(P)PATA Reset
1 D) M* \6 p3 ^& w! y2 B/ RNot Interface Age!% V( h* t! ^ n( n7 g0 X
>(No valid SeaDex script in buffer.& C5 [% J5 } I$ g% u5 L# \5 S
Begin Test 02% C# {: j1 e0 Y7 _/ g
ASCII logging on
8 ?" x2 ?4 A' }# X6 h Not Power Cycling$ x2 ]! t- j: h8 x" O
Not Power Cycling
6 g: `5 A( W' D( {2 V6 |, tZone 00 Head 00 adaptives set to defaults j- k# @1 `& h0 X! B
Zone 01 Head 00 adaptives set to defaults* Q) `: v' b( `$ ^; K& g
Zone 02 Head 00 adaptives set to defaults e% D7 M U' E
Zone 03 Head 00 adaptives set to defaults7 F# j% c* Q9 x2 i. m
Zone 04 Head 00 adaptives set to defaults
$ D1 n; @9 a- u! bZone 05 Head 00 adaptives set to defaults
! X, E- S/ j3 E" wZone 06 Head 00 adaptives set to defaults
) S+ A8 s0 D3 JZone 07 Head 00 adaptives set to defaults
6 I5 W V7 \2 V1 }5 {, jZone 08 Head 00 adaptives set to defaults4 M2 i( |( D* U7 k
Zone 09 Head 00 adaptives set to defaults
' ]& [- g7 x9 Q3 E( I( j" MZone 0A Head 00 adaptives set to defaults( S3 B( _4 j: p* r7 B
Zone 0B Head 00 adaptives set to defaults7 h* g& C! t9 R% P; Q; ~, s
Zone 0C Head 00 adaptives set to defaults
6 v F6 |2 N: J$ KZone 0D Head 00 adaptives set to defaults6 T5 X* X! B6 H( l& k- n
Zone 0E Head 00 adaptives set to defaults4 V$ f4 J/ T9 E
Zone 0F Head 00 adaptives set to defaults. v' w7 C+ y& b* g8 U+ F
Head Mask FFFF - - g4 y1 u9 b1 I# E" }1 y+ I4 z2 k! t- H4 P
Read Bias - Head 0 1 2 3
& [4 }; ?; g. Y A3 `* _! ]& x- f7 R2 I0 h9 L' a
HiTemp Bias Head 0 1 2 3
+ m- z+ f0 h T5 R& i6 j7 X A
. p n8 z1 ^* R8 N+ ^Head Mask FFFF - Switch to full int.
( {. ~) x: j! |) B Spin Ready
* u" k2 b5 X# ECalibrating Physical Track 0 on heads 0 thru 0
# m; i# d( H0 l, g- P" @Calibrating Head 0 ...6 |& i3 ?7 S) g! T d, f/ `* Z& c
Radial Offset Table:6 _& Y& u% Q/ o; o
Head 0 Offset = 67E
4 ^9 n- v: y) m% jHead 1 Offset = 1388
% p: |9 m* q8 `- i4 |% ZHead 2 Offset = 13881 v" T9 g5 L9 r: G
Head 3 Offset = 13886 g# \9 g6 c- Z" y
SkpCylList deleted
2 k6 W" J# j6 I1 V4 SSys= 0F010-0F08F 0280 SPTK on sys trks 2 F) Q- M5 P) y# s% r
<empty>
8 _& C5 j. S: H7 @) t( p' t- r# O7 {% Qdrive must be reformatted
l/ N" c3 y/ g) o% R5 SSkipping MDW oversample s/n cylinders.) V. J: ?$ c, j
Zone 00: 00018 - 00BE8 1100 (044C) 683.439' k% e4 V5 n: Q1 L1 r( |
Zone 01: 00BE9 - 027FE 1056 (0420) 666.63
; K; h$ ~6 ^8 _, x! lZone 02: 027FF - 04707 1026 (0402) 646.275
5 l2 ?# `+ a6 C2 ZZone 03: 04708 - 06CA3 990 (03DE) 622.431
+ i; u* N6 V4 [ X$ U. hZone 04: 06CA4 - 08B66 953 (03B9) 602.353
' l5 d9 E- `/ |Zone 05: 08B67 - 0A479 916 (0394) 580.392
* p7 t9 j* F! ?Zone 06: 0A47A - 0C405 880 (0370) 545.882- n6 `. X( E: v( L; l
Zone 07: 0C406 - 0D99A 836 (0344) 527.59
' ]. z: @5 m2 u: lZone 08: 0D99B - 0ECD9 806 (0326) 506.144+ }. \! k' @- W/ L S8 r; m
Zone 09: 0ECDA - 10337 770 (0302) 480.724
/ ~; S1 H- r0 ~$ J* }Zone 0A: 10338 - 11397 733 (02DD) 461.672# q, N/ w4 d# Z/ ~. G. X% x( D7 k% B
Zone 0B: 11398 - 12854 691 (02B3) 437.423( k. L% j4 q, d. {* R# i$ c
Zone 0C: 12855 - 13F38 660 (0294) 410.353
7 k% i3 T" m1 D- M! O* FZone 0D: 13F39 - 14AE7 623 (026F) 396.401% ^ R: s( q" y! V' Z
Zone 0E: 14AE8 - 155D6 605 (025D) 383.316
9 e; ^; r# l2 D$ uZone 0F: 155D7 - 16358 572 (023C) 363.9220 b6 k( |! r, k
Sys= 0F010-0F08F 0280 SPTK on sys trks
2 A' O7 X- ^* n+ F; _: ZTotal LBAs = 04A96402/ B2 D! _" e: K, y" }! Y; R+ W
EP=1, TA=1, HiGain=1, OTRd=1, Early Rd=0, Splash=1, Reload=1, NPML=1, MRBias=1
# u- B4 H4 I( DBst/Zap=1, SrvoThrsh=1, RunOut=1, MaxECC=1, ECC 2=1, ECC 1=1, ECC 0=1* X) n( [) D4 g8 q) x/ |# P
Data=FF, Write=80, ID=FF& R' M, O. Q- N% _! p
No entries in Log
9 P5 f6 d/ P0 \) Y( x# ]) uAll Hds 0-0, All Cyls 00018-16358, Rnd data% O2 P# @0 H7 R# @6 b
Performing AFC Zone Cal
& L3 M' J# r, G9 H: C9 b9 `. X$ fACFC Calibration:! p" ]4 x0 A3 D3 d* e' x) e9 F5 m
CRRO Orders Prior to Cal: (PES*2)^2
/ `5 S, ]- G" g Cyl.Hd 2 3 4 5 6 7 8 12 24
, v ]0 ]& e' F1 E0 A00018.00 0115 0034 0022 00cd 0055 0002 006a 0004 000d6 F( e8 J0 `9 h }0 [" M" \
02000.00 00fa 0048 0010 00d4 0049 0032 0025 0011 000a6 B q i( R& x7 {5 z
04000.00 00b4 0049 0004 0059 009d 000a 0041 0001 0008
& u1 z5 c- l8 v4 o& |1 U06000.00 010d 0049 0009 0050 0092 0011 0074 0012 000d# E u& \! b3 [6 c4 u. ~: P
08000.00 0121 0019 0019 0061 009d 0000 0028 003a 000d2 n. Q5 n" B, X0 W
0a000.00 0088 0055 0010 00b9 0062 0008 0029 0022 0014
; E7 b) m2 [4 ~. r' J0e000.00 00da 0009 0041 0052 00cd 0004 0055 0032 000d
& F# K2 Q( X S; E# s10000.00 007d 00a9 00a0 004a 0062 0048 0032 0035 0005; y* G! d* ?: m* T2 ^% S1 n$ j
12000.00 00aa 0044 00c8 0025 0082 000d 0059 000a 0008
: |) [! G4 r2 c9 i14000.00 0049 0035 003d 0025 0041 0065 0055 0028 000d
l' ^' i! X0 Q3 N# w16000.00 00b2 0065 00b2 004a 0095 003d 003d 0004 0008& `6 J2 b9 m& S. ?0 @ i* |" E
RTE Amplitude = 0011 servo clocks. Sector = 0023h. Trk/2 = B2B3h.: `+ D, P7 T$ N- x, ~' }0 Q
RTE Amplitude = 000D servo clocks. Sector = 0023h. Trk/2 = 8EF8h./ m+ @" s o! f: c7 y9 |# J
RTE Amplitude = 000B servo clocks. Sector = 0023h. Trk/2 = 6B3Dh.& a- j% `$ q$ |6 f1 h ]
RTE Amplitude = 000A servo clocks. Sector = 0023h. Trk/2 = 4782h.7 S: A# N, [5 ^% z6 n5 g, y9 x/ b
RTE Amplitude = 0009 servo clocks. Sector = 0019h. Trk/2 = 23C7h.
2 ~( T, f* l2 J5 E; D- F5 |+ {RTE Amplitude = 0008 servo clocks. Sector = 0019h. Trk/2 = 000Ch.
6 M5 { J ^% x+ l, q& EEP=0, TA=0, HiGain=0, OTRd=0, Early Rd=0, Splash=0, Reload=0, NPML=0, MRBias=0
: s& J3 o, N6 H+ U4 T+ nBst/Zap=0, SrvoThrsh=0, RunOut=0, MaxECC=0, ECC 2=1, ECC 1=1, ECC 0=1# |4 p8 l: F. @& y1 x
Data=02, Write=40, ID=1E
- v1 U T6 X5 p3 d) s Channel Srvo Table
2 @4 ?. B+ [6 U4 V. ~( D Head Addr VGA SATT Tap5 Tap6 Tap3 Tap7 Tap2 Tap8 Tap9 RATT XDC
: J. X1 k0 P' H G/ N2 | 00 F7F2 2D 02 7C BF 97 AF 91 94 8B 41 7E
3 O2 ]; }9 B# L; ZAdapt Servo Zone 08
6 ?7 V- m& Z8 qAdapt Servo 0000e33a.00. N( H* l( C* N
Adapts Loaded
: V) x. h# K; i7 S/ B0 lDbck DATA load
l5 [) E& h6 ?NPML 00 4 k+ H1 h) C. `+ N$ R
Test 0000e33a.00 0001757f BER 00000126 : y7 h2 S! M" Q9 j5 @$ A
Adjust ATTR 01 VGAS 69 VGAR cd FREQR 81 Read 0043 SRVTEST 41 Read 0043 . j8 v& L, C) u6 u6 Y. M$ P
fail lower limit
# c! r2 R) q3 p5 FMRASYM 80 000196b4 BER 00000628 * w" b0 w$ P7 i ^, j6 v: d" E
MRASYM 8b 008296d6 BER 01001135 hold
' e, ]" K$ v/ `, I& eZone 8 [0000D9A3.0,FC64,0264,C0] j+ ~3 ~7 M) |6 `$ Y! s7 G
Left Bath = FF35, Right Bath = FF6A : Pick (FF4F) ( Min/Max AGC BEFF )/ K" ? J* V1 q! Z- @. e
Zone 9 [0000ECE2.0,FD05,0305,C0]8 N. s; M+ H/ v- L: U+ @" \
Left Bath = FFB6, Right Bath = 0017 : Pick (FFE6) ( Min/Max AGC B6FF )
8 i% V. K$ }2 PTest 0000e33a.00 000107cc BER 00000fff 6 i' T$ {- ]+ l, S
Zone 0 [00000020.0,F689,FC89,C0]
$ B0 r0 G/ w7 G! w. d1 `. S Left Bath = F9A7, Right Bath = F9F5 : Pick (F9CE) ( Min/Max AGC B4FF )
+ i4 r @9 [$ KZone 1 [00000BF1.0,F6D4,FCD4,C0]
, F" n' b: f P Left Bath = F9DB, Right Bath = FA16 : Pick (F9F8) ( Min/Max AGC BCFF )
% F; l5 y; i2 g1 c& ZTest 00000bc8.00 00017a14 BER 00000fff : x3 Y/ v- G$ m Q4 ^! [ G/ t
Test 00000bc8.00 00017d97 BER 00000fff 9 p3 Z3 I% V' U$ |
Test 0000e33a.00 00013ec3 BER 00000fff
+ l1 z7 H' e% `, J, Y. t" ~Adjust ATTR 01 VGAS 6a VGAR b9 FREQR 84 Read 0043 SRVTEST 41 Read 0043 7 `1 X' k# e" @" g' s) n
fail lower limit
* [+ J; @$ q' S! BMRASYM 80 00010bf7 BER 00000fff ) X/ c- [& p1 ?3 ]2 J0 {! q
MRASYM 77 00011114 BER 00000fff hold
+ I# A8 ?' X* G" c2 p$ j4 uDefault Tap Weight 00000000 Settle Tap Weight 00000154( C0 b" a" p" p/ H {, T, t+ I
XDCTAP 7e 0001d2c2 BER 00000000 adapt
! N. T' n# E. K* }XDCTAP 79 0081a3fc BER 01000000 hold % U5 p1 H1 Z$ W1 K+ I) N/ U4 }
CUTOFF Lower 0022 Upper 013b Step 0003 Right 18 Mask 0008' z y# x; F+ }) N! J2 [0 b
Default 0127 0001aaf1 BER 00000000
( S0 M; F1 z# H) FFloor 1 0f 0001cfd1 0001f90f
8 x' Q) j& P" z7 x5 ]- E" j+ R* LLeft 1 011f 0001bd5c
* n9 T' V4 j' U% [- y5 uMiddle 1 0128 0001b19f; T1 X) @9 {+ Q
Right 1 0132 0001b0da
) @9 O2 W0 X7 d: [7 `/ Y, M& LLowest 1 012e 0001a0f0- @4 N" K3 j2 l: R3 c9 o- |* k
New 0128 0001abd6 BER 00000000 s4 k7 d, [; v2 f0 Z5 K) i$ k
SV TAP5 Lower 0020 Upper 00df Step 0006 Right 1f Mask 1000
; l& C4 ?4 W/ i3 a& _+ u sDefault 005c 0001b493 BER 00000000
2 |4 R) @7 ?! z p0 AFloor 1 20 0001b646 0001b646- ]$ s7 _7 \" r: f0 K6 c& } e
Left 1 0020 0001b1e7
# P7 H: q" \" z, w8 `* FMiddle 1 007f 0001add1
8 ]+ F6 x# `- v8 KRight 1 00df 0001aec8
$ F* a" \; E* }# n. |Lowest 1 00c2 0001a9f5
5 P7 d( y1 K1 o, P% ZCurve Size Bathtub
# B' _4 M y( HNew 007f 0001c733 BER 00000000
+ r. N7 S! q9 `: r0001c11e BER 00000000 _ATT 01 VGAS 6a VGAR 67 FREQR 81 Taps frozen read adapt4 F2 f% C. H8 ^$ \# E) C. ~
Current Tap Weight 0000134f diff ffffecb1 tap limits
) `5 Q, }' D& P: E) x0 j) \, P, ~0001aaf1 BER 00000000 _ATT 01 VGAS 6a VGAR 68 FREQR 7f Taps frozen read adapt
- o2 H7 ^- o7 L+ E! N0 S- fCurrent Tap Weight 00000020 diff 0000132f tap limits
+ Q' v+ ~& L6 U; E0001bb80 BER 00000000 _ATT 01 VGAS 69 VGAR 5d FREQR 7e Taps frozen read adapt
% d. k1 }' M1 l/ n DCurrent Tap Weight 0000005d diff ffffffc3 Save servo Force servo update 6 a/ E- C" A! O$ w d' _4 y
Dbck Default DATA load+ m! o" r7 j$ Z" Y. a5 Z
Test 0000e33a.00 0000fea9 BER 00000fff
) l# N3 i5 J7 URatio 0000
: d0 j- w5 b5 a5 d0 o, O$ oZone 8 [0000D9A3.0,FC4F,024F,C0]
% P* k2 n! e8 O Left Bath = FF2B, Right Bath = FF75 : Pick (FF50) ( Min/Max AGC BCFF ). @, L& e$ N: n) Y; L! d
Zone 9 [0000ECE2.0,FCE6,02E6,C0]
?0 t3 Q. C. L2 V* e; z+ }' v Left Bath = FFBF, Right Bath = 0015 : Pick (FFEA) ( Min/Max AGC B6FF )8 e- }4 d- \* Q6 k4 f& N
HiTemp Bias BackOff Head 0 1 2 3
0 X. n* K' p3 V& M+ t y A
2 o$ M+ h, p5 a' h9 pMedia 0000
: V6 b2 Z8 \ D+ n+ A9 ]Adapt Data Zone 00
- \- z9 m* d' [- w0 ATest 00000600.00 000128f7 BER 000001d8
, E/ [7 X( A# G! T$ m+ \5 aTest 00000600.00 000122da BER 00000049
4 h$ G; a) n% MAdapt Data 00000600.00: l) X/ _: k; y& s9 L' \% |2 s
Dbck DATA load/ I1 t: P4 K5 T x" c
NPML 00 4 |, @' d- _ N% x- ]( }: k2 X
Test 00000038.00 00013a05 BER 0000000c
& Y8 d( T# j3 ^( g) NTest 00000600.00 000121e5 BER 00000046
; D4 N: T9 o0 r! s+ Q8 ^Check ATTR 01 VGAS 7b VGAR 97 FREQR 7f Read 0043 within VGAR FREQR
; [( h3 l% s* c; M% ]+ OMRASYM 80 00011b71 BER 00000042
4 s2 ?5 N+ G" U1 X$ QMRASYM 77 00013c9f BER 00000056 hold
' ?" c) k9 @ j( u$ M8 sOD OFST Lower f96e Upper fa2d Step 0006 Right 1f Mask 4340
8 }* k' E8 D- c" a1 l! `9 ADefault f9ce 0001565f BER 00000056
) { O) Y. J% r" O+ ]9 YFloor 1 0b 000196d7 000196d7
) C2 r! J1 r2 m, d$ `: nLeft 1 f9aa 000161d3
" E1 s3 y( @# |$ a& pMiddle 1 f9c4 0001376b7 N$ R, v+ i# S" b: R
Right 1 f9df 00017ec2
w6 {1 f8 e' @. h/ M! ]" PLowest 1 f9bc 000111a9! W8 _: J' P# w. e
Curve f9d4 000154a2
+ D) `6 c, N# ~7 KNew f9c4 00011ec6 BER 00000000 AUTO
8 U' P5 x4 c% T8 L* yCheck ATTR 01 VGAS 7d VGAR 9b FREQR 80 Read 0043 within VGAR FREQR
2 F y$ p" g1 [5 FTest 00000600.00 0001258a BER 00000041
2 a" @, Z3 E, _Noise target 00000000
( p" T- b- v% SDbck Noise OFF2 J1 J! D: G9 i+ B- i% ^+ b
Dbck DATA save
- x: f" C8 s% A! y- cWRITE_I Lower 0000 Upper 001b Step 0001 Right 1b Mask 03422 e# k0 b L- ^1 V. c
Default 000e 00843318 BER 030016fd Write Error
$ k7 P4 H% T& R- p- o. tWrite Error Write Error Write Error Write Error Write Error Write Error Write Error Write Error Write Error Write Error Write Error Write Error Write Error Write Error Write Error Pgm=02 Trk=00600(00600).0(0).048(3E0) Zn=0 Err=00 ErCt=02C6 Hlth=0000 CHlth=0008 Ready LBA=001961306 f+ B& V+ f8 [* _9 c
Pgm=02 Trk=00600(00600).0(0).0A0(438) Zn=0 Err=00 ErCt=02C6 Hlth=0000 CHlth=0008 Ready LBA=00196180
% U- |2 Z( e* v4 ~Write Error Write Error Write Error 这个是那里在出错?/??//; F$ H2 L' A4 ^7 n+ h
# \$ O) K0 R% ]$ n) h |
|