/[PAMELA software]/yoda/techmodel/forroutines/tracker/common/common_readraw.f
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Annotation of /yoda/techmodel/forroutines/tracker/common/common_readraw.f

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Revision 6.0 - (hide annotations) (download)
Tue Feb 7 17:11:10 2006 UTC (18 years, 11 months ago) by kusanagi
Branch: MAIN
CVS Tags: yodaPreTermistors2_1/00, YODA6_2/01, YODA6_2/00, YODA6_1/00, YODA6_0/00, YODA6_3/00, yodaPreTermistores2_0/00
Changes since 1.1: +0 -0 lines
Several new features in this revision:
a) all the packets are conform to the Mass Memory Format specifications (http://people.roma2.infn.it/~cpu/Mass_Memory_Format.html)
b) unpacking either using the old files structure OR the new one file unpacking.
c) parametrized root files compression factor
d) deleting of the following packet: TofTest, TrkTest, TrkEvent.
e) the Tracker routines now work without the use of temp files.

The point a) allow Yoda to unpack in the root file all the packets generated by the CPU. According to the MassMemoryFormat; that is three possible data are available:

1) almost explicit structure of the packet (like for Log, Tracker, Mcmd, etc....);
2) dummy data collection structure (InitHeader, InitTrailer, CalibHeader, CalibTrailer);
3) just the data of the packet (almost all Alarm and Init procedures). The class regarding this packets have only one parameters, a TArrayC class, which contain the data-block included in the packet (tat is the data below the packet Header).

The point b) has been implemented as a consequence of an agreement about a more compact structure of the unpacked data. Up to now the structure of each unpacked data consisted of a folder, named after the packet type, and three files: xxx.Header.root, xxx.NamePacket.root, xxx.Registry.root.
Starting from this release YODA, by default will unpack the data in a unique root file. The structure of this file will consist of:
- several TTree(s) named after the packet type;
- into each TTree are foreseen three TBranche(s):
    - 'Header'  (the old xxx.Header.root file)
    - 'NameOfThePacket' (the old xxx.Event.root file or the xxx.Event.DETECTOR.root)
    - 'Registry' (the old xxx.Registry.root file)

Anyway is still possible, but deprecated, to unpack using the old structure, passing to the "yoda" command the optional parameter "-multifile"

The point c) has been implemented because is well know that writing time in a TTree is as much fast as much lower is the compression factor for the root file; anyway for a PAMELA dat file, a compression equal to 0 will generate a root file which will be more than two times the original size. To modify the compression parameter just add the optional parameter "-c [0-9]" to the yoda command line.

1 kusanagi 1.1 ***************************************************************
2     *
3     * common for readraw
4     *
5     *
6     * 10/9/2005 modified by david fedele to include general variables
7     *
8     **************************************************************
9    
10    
11     integer*2 header(16) !header: 16 2-byte words
12     integer*2 trailer(3) !trailer: 3 2-byte words
13     integer checkheader !header control flag:
14     ! =1 if some error occurred
15     ! =2 if Acquisition header,
16     ! =3 if Calibration header
17     common/pkt_structure/header,checkheader,trailer
18    
19    
20     integer DAQmode_cal !
21     integer DSPnumber_cal !view number
22     integer dataword
23     integer calibrationnumber
24     integer nused_event
25     integer ped_1,ped_2,ped_3
26     integer sig_1,sig_2,sig_3
27     integer nbad_1,nbad_2,nbad_3
28     integer ff
29     integer checksum_cal
30     integer DSPbad_o(nviews,nstrips_view) !online bad strips
31     real DSPped_o(nviews,nstrips_view) !online pedestal
32     real DSPsig_o(nviews,nstrips_view) !online sigma
33     integer crc_calib(3) !crc control per ladder
34     integer crc_hcalib !crc control per header
35    
36     common/calibration_pkt/DAQmode_cal,DSPnumber_cal
37     $ ,dataword,calibrationnumber,
38     $ nused_event,
39     $ ped_1,ped_2,ped_3,
40     $ sig_1,sig_2,sig_3,
41     $ nbad_1,nbad_2,nbad_3,
42     $ ff,checksum_cal
43     $ ,DSPped_o,DSPsig_o,DSPbad_o,crc_calib,crc_hcalib
44    
45     integer DAQmode_dat !9 = full acquisition mode
46     !10 = compressed acquisition mode
47     !11 = compressed+full acquisition mode
48     integer DSPnumber_dat !view number
49     integer DATAlength_dat !data buffer length
50     integer eventn_dat !DSP event number
51     integer nclust_dat!nclust*2+1 = number of strips to be
52     integer cutc_dat !cut to include strips in a cluster
53     integer cutcl_dat !cut to search for clusters
54     integer addrcluster_dat(3) !address of the greatest cluster(view,ladder)
55     integer signcluster_dat(3) !signal of the greatest cluster(view,ladder)
56     integer fc_dat !compression flag
57     integer compressiontime_dat !DSP program compression time
58     integer fl5_dat !flag
59     integer fl4_dat !flag
60     integer fl3_dat !flag
61     integer fl2_dat !flag
62     integer fl1_dat !flag
63     integer fl6_dat !flag
64     integer checksum_dat !DSP header checksum
65     integer*2 b_tra(100000) !DATA BUFFER
66     integer pnum_dat,cmdnum_dat,bid_dat,alarm_dat,aswr_dat
67     integer crc_dat
68    
69     common/data_pkt/DAQmode_dat,DSPnumber_dat
70     $ ,eventn_dat,nclust_dat
71     $ ,cutc_dat,cutcl_dat
72     $ ,addrcluster_dat,signcluster_dat
73     $ ,fc_dat,compressiontime_dat
74     $ ,fl5_dat,fl4_dat,fl3_dat,fl2_dat,fl1_dat,fl6_dat
75     $ ,checksum_dat,datalength_dat,b_tra
76     $ ,pnum_dat,cmdnum_dat,bid_dat
77     & ,alarm_dat,aswr_dat
78     & ,crc_dat
79    

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