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  • [20210507]完善vim bccalc_win插件.txt

    [20210507]完善vim bccalc_win插件.txt

    --//就是有时候运算不需要bc -l方式执行.而是使用bc执行.增加<Leader>c0快捷.
    --//例子:
    Bucket: #=61745 Mutex=0x813ddfa8(0, 37, 0, 6)
      LibraryHandle:  Address=0x7dcd7c38 Hash=3650f131 LockMode=0 PinMode=0 LoadLockMode=0 Status=VALD
        ObjectName:  Name=select * from dept where deptno=10
          FullHashValue=1431c45dbddbb9e74eaa74d53650f131 Namespace=SQL AREA(00) Type=CURSOR(00) Identifier=911274289 OwnerIdn=83
        Statistics:  InvalidationCount=0 ExecutionCount=3 LoadCount=5 ActiveLocks=0 TotalLockCount=3 TotalPinCount=2
        Counters:  BrokenCount=1 RevocablePointer=1 KeepDependency=2 Version=0 BucketInUse=2 HandleInUse=2 HandleReferenceCount=0
        Concurrency:  DependencyMutex=0x7dcd7ce8(0, 6, 0, 0) Mutex=0x7dcd7d78(30, 115, 0, 6)
        Flags=RON/PIN/TIM/PN0/DBN/[10012841]
        WaitersLists:
          Lock=0x7dcd7cc8[0x7dcd7cc8,0x7dcd7cc8]
          Pin=0x7dcd7ca8[0x7dcd7ca8,0x7dcd7ca8]
          LoadLock=0x7dcd7d20[0x7dcd7d20,0x7dcd7d20]
        Timestamp:  Current=05-06-2021 11:10:01
        HandleReference:  Address=0x7dcd7e08 Handle=(nil) Flags=[00]
        ReferenceList:
          Reference:  Address=0x7db2d5d8 Handle=0x7df18190 Flags=ROD[21]
          Reference:  Address=0x7fbeb330 Handle=0x7d77b428 Flags=ROD[21]
        LibraryObject:  Address=0x7c547bb0 HeapMask=0000-0001-0001-0000 Flags=EXS[0000] Flags2=[0000] PublicFlags=[0000]
          DataBlocks:
            Block:  #='0' name=KGLH0^3650f131 pins=0 Change=NONE
              Heap=0x7e330bd0 Pointer=0x7c547c50 Extent=0x7c547b30 Flags=I/-/P/A/-/-
              FreedLocation=0 Alloc=3.687500 Size=3.976562 LoadTime=11614454020
          ChildTable:  size='16'
            Child:  id='0' Table=0x7c548a60 Reference=0x7c5484a0 Handle=0x7d0b2810
            ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
            Child:  id='1' Table=0x7c548a60 Reference=0x7c548998 Handle=0x7dac38b0
            ++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
    --//2个子光标,对应handle就是子光标地址。
        NamespaceDump:
          Parent Cursor:  sql_id=4xamnunv51w9j parent=0x7c547c50 maxchild=2 plk=n ppn=n
            CursorDiagnosticsNodes:
              ChildNode:  ChildNumber=0 ID=3 reason=Optimizer mismatch(12) size=2x228 statistics_level= typical              all
    --//验证Bucket: #=61745.
    --// Hash=3650f131,输入10转化为10进制.
    3650f131  = 911274289
    --//如果输入cc,计算结果是0.应为计算使用bc -l,注:backup总数量是131072.
    911274289 % 131072 = 0
    --//如果输入c0,计算结果是61745,计算正确.
    911274289 % 131072  = 61745

    --//源代码如下,bc.exe可执行程序自己要另行安装,一般我选择unxutils包.
    "" calculate expression entered on command line and give answer, e.g.:
    " :Calculate sin (3) + sin (4) ^ 2
    command! -nargs=+ Calculate echo "<args> = " . Calculate ("<args>",0)

    "" calculate expression from selection, pick a mapping, or use the Leader form
    vnoremap ;bc "ey`>:call CalcLines(0)<CR>
    vnoremap ;bb "ey`>:call CalcLines(0)<CR>

    vnoremap ;10 "ey`>:call CalcLines(10)<CR>
    vnoremap ;16 "ey`>:call CalcLines(16)<CR>

    vnoremap ;tx "ey`>:call CalcLines(1616)<CR>

    vnoremap ;22 "ey`>:call CalcLines(22)<CR>
    vnoremap ;dba "ey`>:call CalcLines(22)<CR>

    vnoremap ;32 "ey`>:call CalcLines(32)<CR>
    vnoremap ;scn "ey`>:call CalcLines(32)<CR>

    vnoremap ;ss "ey`>:call CalcLines(10016)<CR>
    vnoremap ;rr "ey`>:call CalcLines(20016)<CR>
    vnoremap ;hd "ey`>:call CalcLines(30016)<CR>
    vnoremap ;hh "ey`>:call CalcLines(30016)<CR>
    vnoremap ;dh "ey`>:call CalcLines(30016)<CR>

    "" calculate expression on current line, pick a mapping, or use the Leader
    nnoremap  <Leader>bx <Esc>A <Esc>"eyy$:call CalcLines(0)<CR>
    nnoremap  <Leader>bc <Esc>A = <Esc>"eyy:call CalcLines(0)<CR>
    nnoremap  <Leader>bb <Esc>A = <Esc>"eyy:call CalcLines(0)<CR>
    "noremap   <Leader>cc Yp!!bc -lq<CR>kA = <ESC>J
    noremap   <Leader>cc Yp!!bc -lq| tr -d ' \ ' | sed -e "s/.([0-9]*[1-9])0+$/.1/" -e "s/.0+$//"<CR>kA = <ESC>J
    noremap   <Leader>c0 Yp!!bc -q| tr -d ' \ ' | sed -e "s/.([0-9]*[1-9])0+$/.1/" -e "s/.0+$//"<CR>kA = <ESC>J
    noremap   <Leader>c, Yp!!sed "s/,//g" |bc -lq| tr -d ' \ ' | sed -e "s/.([0-9]*[1-9])0+$/.1/" -e "s/.0+$//"<CR>kA = <ESC>J

    " convert hexdecimal to decimal
    nnoremap  <Leader>10 <Esc>A = <Esc>"eyy:call CalcLines(10)<CR>

    " convert decimal to hexdecimal
    nnoremap  <Leader>16 <Esc>A = <Esc>"eyy:call CalcLines(16)<CR>

    " split event P1 to TYPE and MODE
    nnoremap  <Leader>tx  <Esc>A = <Esc>"eyy:call CalcLines(1616)<CR>

    " split dba(10) or dba(16) to file# and block#
    nnoremap  <Leader>22  <Esc>A = <Esc>"eyy:call CalcLines(22)<CR>
    nnoremap  <Leader>dba <Esc>A = <Esc>"eyy:call CalcLines(22)<CR>

    " split scn(10) or scn(16) into scn_wrap,scn_base
    nnoremap  <Leader>32  <Esc>A = <Esc>"eyy:call CalcLines(32)<CR>
    nnoremap  <Leader>scn <Esc>A = <Esc>"eyy:call CalcLines(32)<CR>

    " convert scn_wrap,scn_base(10) or scn_wrap,scn_base(16) to 10 or 16 base
    nnoremap  <Leader>ss <Esc>A = <Esc>"eyy:call CalcLines(10016)<CR>

    " convert file#,block# dba(10) or file#,block# dba(16) to 10 or 16 base
    nnoremap  <Leader>rr <Esc>A = <Esc>"eyy:call CalcLines(20016)<CR>

    " convert hexdecimal to decimal or decimal to hexdecimal
    nnoremap  <Leader>hd <Esc>A = <Esc>"eyy:call CalcLines(30016)<CR>
    nnoremap  <Leader>hh <Esc>A = <Esc>"eyy:call CalcLines(30016)<CR>
    nnoremap  <Leader>dh <Esc>A = <Esc>"eyy:call CalcLines(30016)<CR>

    "" calculate from insertmode
    inoremap =: = <Esc>"eyy:call CalcLines(0)<CR>a

    " ---------------------------------------------------------------------
    "  Calculate:
    "    clean up an expression, pass it to bc, return answer
    function! Calculate (s,flag)

        let has_hex = 0
        let str = a:s

        " remove newlines and trailing spaces
        let str = substitute (str, " ",   "", "g")
        let str = substitute (str, 's*$', "", "g")

        " sub common func names for bc equivalent
        let str = substitute (str, 'csins*(',  's (', 'g')
        let str = substitute (str, 'ccoss*(',  'c (', 'g')
        let str = substitute (str, 'catans*(', 'a (', 'g')
        let str = substitute (str, "clns*(",   'l (', 'g')
        let str = substitute (str, 'clogs*(',  'l (', 'g')
        let str = substitute (str, 'cexps*(',  'e (', 'g')

        " alternate exponitiation symbols
        let str = substitute (str, '**', '^', "g")
        let str = substitute (str, '`', '^',    "g")
        let str = substitute (str, '^', '^^^^',    "g")

        " escape chars for shell
        if has("unix")
            let str = escape (str, '*();&><|^')
        endif

        let preload = exists ("g:bccalc_preload") ? g:bccalc_preload : ""

        " run bc
        " return str
        " let answer = system ("echo " . str . " | bc -l " . preload)

        if a:flag == 0
             let answer = system ("echo " . str . " | bc -l " . preload)
             " let answer = answer . " --- ". str
        endif

        if a:flag == 10
            let str = toupper (str)
            let str = substitute (str, "0x", "", "g")
            let answer = system ("echo ibase=16 ;" . str .  " | bc -l " . preload)
        endif

        if a:flag == 16
            let answer = system ("echo obase=16 ;" . str .  " | bc -l " . preload)
            let answer = "0x" . tolower ( answer )
        endif

        let has_hex = Check_hex(str)

        if a:flag == 1616
            if has_hex == 1
                let str = toupper (str)
                let str = substitute (str, "0x", "", "g")
                " 0x10000 hexdecimal = 65536 (10) = 2^16(10)
                let answer  = system ("echo ibase=16 ;" . str . "/10000" . " | bc " . preload)
                let answer1 = system ("echo ibase=16 ;" . str . "%10000" . " | bc " . preload)
                let answer2 = system ("echo ibase=16 ;" . str .  " | bc -l " . preload)
            else
                let answer  = system ("echo " . str . "/65536" . " | bc " . preload)
                let answer1 = system ("echo " . str . "%65536" . " | bc " . preload)
                let answer2 = "0x" . system ("echo obase=16 ;" . str .  " | bc -l " . preload)
            endif
            let answer = "/2^16  %2^16 (Type | Mode) = " . answer . "," . answer1 ." = " . tolower(answer2)
        endif

        if a:flag == 22
            if has_hex == 1
                let str = toupper (str)
                let str = substitute (str, "0x", "", "g")
                " 0x400000 hexdecimal = 4194304 (10) = 2^22(10)
                let answer  = system ("echo ibase=16 ;" . str . "/400000" . " | bc " . preload)
                let answer1 = system ("echo ibase=16 ;" . str . "%400000" . " | bc " . preload)
                let answer2 = system ("echo ibase=16 ;" . str .  " | bc -l " . preload)
            else
                let answer  = system ("echo " . str . "/4194304" . " | bc " . preload)
                let answer1 = system ("echo " . str . "%4194304" . " | bc " . preload)
                let answer2 = "0x" . system ("echo obase=16 ;" . str .  " | bc -l " . preload)
            endif
            " let answer = "set dba " . answer . "," . answer1
            let answer = "set dba " . answer . "," . answer1 ." = alter system dump datafile " . answer . " block " . answer1 ." = " . tolower(answer2)
        endif

        if a:flag == 32
            if has_hex == 1
                let str = toupper (str)
                let str = substitute (str, "0x", "", "g")
                " 0x100000000 hexdecimal = 4294967296(10) = 2^32(10)
                let answer  = system ("echo ibase=16 ;" . str . "/100000000" . " | bc " . preload)
                let answer1 = system ("echo ibase=16 ;" . str . "%100000000" . " | bc " . preload)
                let answer2 = system ("echo obase=16 ;ibase=16 ;" . str . "/100000000" . " | bc " . preload)
                let answer3 = system ("echo obase=16 ;ibase=16 ;" . str . "%100000000" . " | bc " . preload)
            else
                let answer  = system ("echo " . str . "/4294967296" . " | bc " . preload)
                let answer1 = system ("echo " . str . "%4294967296" . " | bc " . preload)
                let answer2 = system ("echo obase=16 ;" . str . "/4294967296" . " | bc " . preload)
                let answer3 = system ("echo obase=16 ;" . str . "%4294967296" . " | bc " . preload)
            endif
            let answer = "scn_wrap,scn_base(10): " . answer . "," . answer1 . " = scn_wrap,scn_base(16): " . "0x" . tolower (answer2) . "," . "0x" . tolower(answer3)
        endif

        if a:flag == 10016
            if has_hex == 1
                let str = toupper (str)
                let str = substitute (str, "0x", "", "g")
                " 0x100000000 hexdecimal = 4294967296(10) = 2^32(10)
                let str = substitute (str, "[,.]", "*100000000+", "g")
                let answer  = system ("echo obase=10 ;ibase=16 ;" . str .  " | bc -l " . preload)
                let answer1 = system ("echo obase=16 ;ibase=16 ;" . str .  " | bc -l " . preload)
            else
                let str = substitute (str, "[,.]", "*4294967296+", "g")
                let answer  = system ("echo " . str . " | bc -l " . preload)
                let answer1 = system ("echo obase=16 ;" . str .  " | bc -l " . preload)
            endif
            let answer = "scn(10): " . answer . " = scn(16): " . "0x" . tolower (answer1)
        endif

        if a:flag == 20016
            if has_hex == 1
                let str = toupper ( str )
                let str = substitute (str, "0x", "", "g")
                " 0x400000 hexdecimal = 4194304 (10) = 2^22(10)
                let str = substitute (str, "[,.]", "*400000+", "g")
                let answer  = system ("echo obase=10 ;ibase=16 ;" . str .  " | bc -l " . preload)
                let answer1 = system ("echo obase=16 ;ibase=16 ;" . str .  " | bc -l " . preload)
            else
                let str = substitute (str, "[,.]", "*4194304+", "g")
                let answer  = system ("echo " . str . " | bc -l " . preload)
                let answer1 = system ("echo obase=16 ;" . str .  " | bc -l " . preload)
            endif
            let answer = "file#,block# dba(10): " . answer . " = file#,block# dba(16): " . "0x" . tolower (answer1)
        endif

        if a:flag == 30016
            if has_hex == 1
                let str = substitute (str, "0x", "", "g")
                let str = toupper ( str )
                let answer = system ("echo ibase=16 ;" . str .  " | bc -l " . preload)
            else
                let answer = system ("echo obase=16 ;" . str .  " | bc -l " . preload)
                let answer = "0x" . tolower ( answer )
            endif
        endif

        " strip newline and
        let answer = substitute (answer, "[\ ]", "", "g")

        " strip trailing 0s in decimals
        let answer = substitute (answer, '.(d*[1-9])0+$', '.1', "")
        let answer = substitute (answer, '.0+$', '', "")

        return answer
    endfunction

    " ---------------------------------------------------------------------
    " CalcLines:
    "
    " take expression from lines, either visually selected or the current line,
    " pass to calculate function, echo or past answer after '='
    function! CalcLines(flag)

        let has_equal = 0

        " remove newlines and trailing spaces
        let @e = substitute (@e, " ", "",   "g")
        let @e = substitute (@e, 's*$', "", "g")

        " if we end with an equal, strip, and remember for output
        if @e =~ "=$"
            let @e = substitute (@e, '=$', "", "")
            let has_equal = 1
        endif

        " if there is another equal in the line, assume chained equations, remove
        " leading ones
        let @e = substitute (@e, '^.+=', '', '')

        let answer = Calculate (@e,a:flag)

        " append answer or echo
        if has_equal == 1
            exec "normal a" . answer
        else
            echo "answer = " . answer
        endif
    endfunction

    " ---------------------------------------------------------------------
    " Check_hex:
    "
    " Check if the string contains 0x, a, b, c, d, e, f  return has_hex=1
    function! Check_hex(str)
        let has_hex = 0
        let ss = a:str
        let ss = tolower ( ss )

        if ss =~ "0x"
            let has_hex = 1
            return has_hex
        endif

        if ss =~ "[abcdef]"
            let has_hex = 1
            return has_hex
        endif

    endfunction



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  • 原文地址:https://www.cnblogs.com/lfree/p/14742980.html
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