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  • Issue with creating index organized table

    - by mtim
    I'm having a weird problem with index organized table. I'm running Oracle 11g standard. i have a table src_table SQL> desc src_table; Name Null? Type --------------- -------- ---------------------------- ID NOT NULL NUMBER(16) HASH NOT NULL NUMBER(3) ........ SQL> select count(*) from src_table; COUNT(*) ---------- 21108244 now let's create another table and copy 2 columns from src_table set timing on SQL> create table dest_table(id number(16), hash number(20), type number(1)); Table created. Elapsed: 00:00:00.01 SQL> insert /*+ APPEND */ into dest_table (id,hash,type) select id, hash, 1 from src_table; 21108244 rows created. Elapsed: 00:00:15.25 SQL> ALTER TABLE dest_table ADD ( CONSTRAINT dest_table_pk PRIMARY KEY (HASH, id, TYPE)); Table altered. Elapsed: 00:01:17.35 It took Oracle < 2 min. now same exercise but with IOT table SQL> CREATE TABLE dest_table_iot ( id NUMBER(16) NOT NULL, hash NUMBER(20) NOT NULL, type NUMBER(1) NOT NULL, CONSTRAINT dest_table_iot_PK PRIMARY KEY (HASH, id, TYPE) ) ORGANIZATION INDEX; Table created. Elapsed: 00:00:00.03 SQL> INSERT /*+ APPEND */ INTO dest_table_iot (HASH,id,TYPE) SELECT HASH, id, 1 FROM src_table; "insert" into IOT takes 18 hours !!! I have tried it on 2 different instances of Oracle running on win and linux and got same results. What is going on here ? Why is it taking so long ?

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  • slowAES encryption and java descryption

    - by amnon
    Hi , I've tried to implement the same steps as discussed in AES .NET but with no success , i can't seem to get java and slowAes to play toghter ... attached is my code i'm sorry i can't add more this is my first time trying to deal with encryption would appreciate any help private static final String ALGORITHM = "AES"; private static final byte[] keyValue = getKeyBytes("12345678901234567890123456789012"); private static final byte[] INIT_VECTOR = new byte[16]; private static IvParameterSpec ivSpec = new IvParameterSpec(INIT_VECTOR); public static void main(String[] args) throws Exception { String encoded = encrypt("watson?"); System.out.println(encoded); } private static Key generateKey() throws Exception { Key key = new SecretKeySpec(keyValue, ALGORITHM); // SecretKeyFactory keyFactory = SecretKeyFactory.getInstance(ALGORITHM); // key = keyFactory.generateSecret(new DESKeySpec(keyValue)); return key; } private static byte[] getKeyBytes(String key) { byte[] hash = DigestUtils.sha(key); byte[] saltedHash = new byte[16]; System.arraycopy(hash, 0, saltedHash, 0, 16); return saltedHash; } public static String encrypt(String valueToEnc) throws Exception { Key key = generateKey(); Cipher c = Cipher.getInstance("AES/CBC/PKCS5Padding"); c.init(Cipher.ENCRYPT_MODE, key,ivSpec); byte[] encValue = c.doFinal(valueToEnc.getBytes()); String encryptedValue = new BASE64Encoder().encode(encValue); return encryptedValue; } public static String decrypt(String encryptedValue) throws Exception { Key key = generateKey(); Cipher c = Cipher.getInstance(ALGORITHM); c.init(Cipher.DECRYPT_MODE, key); byte[] decordedValue = new BASE64Decoder().decodeBuffer(encryptedValue); byte[] decValue = c.doFinal(decordedValue); String decryptedValue = new String(decValue); return decryptedValue; } the bytes returned are different thanks in advance .

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  • convert variable with mixed date formats to one format in r

    - by jalapic
    A sample of my dataframe: date 1 25 February 1987 2 20 August 1974 3 9 October 1984 4 18 August 1992 5 19 September 1995 6 16-Oct-63 7 30-Sep-65 8 22 Jan 2008 9 13-11-1961 10 18 August 1987 11 15-Sep-70 12 5 October 1994 13 5 December 1984 14 03/23/87 15 30 August 1988 16 26-10-1993 17 22 August 1989 18 13-Sep-97 I have a large dataframe with a date variable that has multiple formats for dates. Most of the formats in the variable are shown above- there are a couple of very rare others too. The reason why there are multiple formats is that the data were pulled together from various websites that each used different formats. I have tried using straightforward conversions e.g. strftime(mydf$date,"%d/%m/%Y") but these sorts of conversion will not work if there are multiple formats. I don't want to resort to multiple gsub type editing. I was wondering if I am missing a more simple solution? Code for example: structure(list(date = structure(c(12L, 8L, 18L, 6L, 7L, 4L, 14L, 10L, 1L, 5L, 3L, 17L, 16L, 11L, 15L, 13L, 9L, 2L), .Label = c("13-11-1961", "13-Sep-97", "15-Sep-70", "16-Oct-63", "18 August 1987", "18 August 1992", "19 September 1995", "20 August 1974", "22 August 1989", "22 Jan 2008", "03/23/87", "25 February 1987", "26-10-1993", "30-Sep-65", "30 August 1988", "5 December 1984", "5 October 1994", "9 October 1984"), class = "factor")), .Names = "date", row.names = c(NA, -18L), class = "data.frame")

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  • How to convert Big Endian and how to flip the highest bit?

    - by Robert Frank
    I am using a TStream to read binary data (thanks to this post: http://stackoverflow.com/questions/2878180/how-to-use-a-tfilestream-to-read-2d-matrices-into-dynamic-array). My next problem is that the data is Big Endian. From my reading, the Swap() method is seemingly deprecated. How would I swap the types below? 16-bit two's complement binary integer 32-bit two's complement binary integer 64-bit two's complement binary integer IEEE single precision floating-point - Are IEEE affected by Big Endian? And, finally, since the data is unsigned, the creators of this dataset have stored the unsigned values as signed integers (excluding the IEEE). They instruct that one need only add an offset (2^15, 2^31, and 2^63) to recover the unsigned data. But, they note that flipping the most significant bit is the fastest way to do that. How does one efficiently flip the most significant bit of a 16, 32, or 64-bit integer? So, if the data on disk (16-bit) is "85 FB" - the desired result after reading the data and swapping and bit flipping would be 1531. Is there a way to accomplish the swapping and bit flipping with generics so it fits into the generic answer at the link above? Yes, kids, THIS is how scientific astronomical data is stored by NASA, ESO, and all professional astronomers. This FITS standard is considered by some to be one of the most successful standards ever created in its proliferation and flexibility!

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  • C to Assembly code - what does it mean

    - by Smith
    I'm trying to figure out exactly what is going on with the following assembly code. Can someone go down line by line and explain what is happening? I input what I think is happening (see comments) but need clarification. .file "testcalc.c" .section .rodata.str1.1,"aMS",@progbits,1 .LC0: .string "x=%d, y=%d, z=%d, result=%d\n" .text .globl main .type main, @function main: leal 4(%esp), %ecx // establish stack frame andl $-16, %esp // decrement %esp by 16, align stack pushl -4(%ecx) // push original stack pointer pushl %ebp // save base pointer movl %esp, %ebp // establish stack frame pushl %ecx // save to ecx subl $36, %esp // alloc 36 bytes for local vars movl $11, 8(%esp) // store 11 in z movl $6, 4(%esp) // store 6 in y movl $2, (%esp) // store 2 in x call calc // function call to calc movl %eax, 20(%esp) // %esp + 20 into %eax movl $11, 16(%esp) // WHAT movl $6, 12(%esp) // WHAT movl $2, 8(%esp) // WHAT movl $.LC0, 4(%esp) // WHAT?!?! movl $1, (%esp) // move result into address of %esp call __printf_chk // call printf function addl $36, %esp // WHAT? popl %ecx popl %ebp leal -4(%ecx), %esp ret .size main, .-main .ident "GCC: (Ubuntu 4.3.3-5ubuntu4) 4.3.3" .section .note.GNU-stack,"",@progbits Original code: #include <stdio.h> int calc(int x, int y, int z); int main() { int x = 2; int y = 6; int z = 11; int result; result = calc(x,y,z); printf("x=%d, y=%d, z=%d, result=%d\n",x,y,z,result); }

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  • C++ arrays as parameters, subscript vs. pointer

    - by awshepard
    Alright, I'm guessing this is an easy question, so I'll take the knocks, but I'm not finding what I need on google or SO. I'd like to create an array in one place, and populate it inside a different function. I define a function: void someFunction(double results[]) { for (int i = 0; i<100; ++i) { for (int n = 0; n<16; ++n) //note this iteration limit { results[n] += i * n; } } } That's an approximation to what my code is doing, but regardless, shouldn't be running into any overflow or out of bounds issues or anything. I generate an array: double result[16]; for(int i = 0; i<16; i++) { result[i] = -1; } then I want to pass it to someFunction someFunction(result); When I set breakpoints and step through the code, upon entering someFunction, results is set to the same address as result, and the value there is -1.000000 as expected. However, when I start iterating through the loop, results[n] doesn't seem to resolve to *(results+n) or *(results+n*sizeof(double)), it just seems to resolve to *(results). What I end up with is that instead of populating my result array, I just get one value. What am I doing wrong?

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  • UIDocumentInteractionController & ARC: [UIPopoverController dealloc] reached while popover is still visible

    - by muffel
    This issue or similar issues have been discussed here before, but I didn't find any working solution for me. I am using the following code to display a UIDocumentInteractionController on an ARC-enabled iOS 7 project: - (void) exportDoc{ // [...] docController = [UIDocumentInteractionController interactionControllerWithURL:[NSURL fileURLWithPath:path]]; docController.delegate = self; [docController presentOpenInMenuFromBarButtonItem:mainMenuButton animated:YES]; } First I didn't want to create a property that holds the controller reference, but as many people said that there are not alternatives to it. It is defined as @property (strong) UIDocumentInteractionController* docController; exportDoc is run in the main thread using NSOperationQueue. Whenever it is executed, I get the following error message: Terminating app due to uncaught exception 'NSGenericException', reason: '-[UIPopoverController dealloc] reached while popover is still visible.' This is what the backtrace says: (lldb) bt * thread #1: tid = 0x1c97d9, 0x000000019a23c1c0 libobjc.A.dylibobjc_exception_throw, queue = 'com.apple.main-thread', stop reason = breakpoint 2.1 frame #0: 0x000000019a23c1c0 libobjc.A.dylibobjc_exception_throw frame #1: 0x000000018d982e90 CoreFoundation+[NSException raise:format:] + 128 frame #2: 0x0000000190bc348c UIKit-[UIPopoverController dealloc] + 96 frame #3: 0x0000000190e18fc8 UIKit-[UIDocumentInteractionController dealloc] + 168 frame #4: 0x000000019a255474 libobjc.A.dylib(anonymous namespace)::AutoreleasePoolPage::pop(void*) + 524 frame #5: 0x000000018d881988 CoreFoundation_CFAutoreleasePoolPop + 28 frame #6: 0x000000018e42cb18 Foundation-[NSOperationInternal _start:] + 892 frame #7: 0x000000018e4eea38 Foundation__NSOQSchedule_f + 76 frame #8: 0x000000019a813fd4 libdispatch.dylib_dispatch_client_callout + 16 frame #9: 0x000000019a8171dc libdispatch.dylib_dispatch_main_queue_callback_4CF + 336 frame #10: 0x000000018d942c2c CoreFoundation__CFRUNLOOP_IS_SERVICING_THE_MAIN_DISPATCH_QUEUE + 12 frame #11: 0x000000018d940f6c CoreFoundation__CFRunLoopRun + 1452 frame #12: 0x000000018d881c20 CoreFoundationCFRunLoopRunSpecific + 452 frame #13: 0x0000000193511c0c GraphicsServicesGSEventRunModal + 168 frame #14: 0x00000001909b2fdc UIKitUIApplicationMain + 1156 * frame #15: 0x000000010000947c MyApplicationmain(argc=1, argv=0x000000016fdfbc80) + 108 at main.m:16 frame #16: 0x000000019a82faa0 libdyld.dylibstart + 4 As far as I understand the autoreleasepool just releases the controller. Shouldn't this be prevented by using a strong property just as I did? Do you have any idea what the problem can be and how I can solve it?

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  • Problem inserting Pygames on a wxPython panel using Boa Constructor

    - by Kohwalter
    Hello, im new in Python so im hoping to to get some help to figure out what is going wrong. Im trying to run a Pygames from within wxPython panel (made on Boa Constructor). To do that i followed the instructions on the http://wiki.wxpython.org/IntegratingPyGame but still it isn't working. Here is the Panel code that was used to make the integration: class PG_panel(wx.Panel): def __init__(self, ID, name, parent, mypos, mysize): # pygame is imported in this class # make it globally available global pygame #self.Fit() wx.Panel.__init__(self, id=wxID_FRMMAINPANELTABULEIRO, name='panelTabuleiro', parent=self, pos=(16, 96), size=mysize) # pygame uses SDL, set the environment variables os.environ['SDL_WINDOWID'] = str(self.GetHandle()) os.environ['SDL_VIDEODRIVER'] = 'windib' # do the pygame stuff after setting the environment variables import pygame pygame.display.init() # create the pygame window/screen screen = pygame.display.set_mode(464, 464) #(424,450) # start the thread instance self.thread = PG_thread(screen) self.thread.start() def __del__(self): self.thread.stop() And im trying to use that panel on an interface from Boa Constructor, here is the code: class frmMain(wx.Frame): def _init_ctrls(self, prnt): # generated method, don't edit wx.Frame.__init__(self, id=wxID_FRMMAIN, name='frmMain', parent=prnt, pos=wx.Point(660, 239), size=wx.Size(815, 661), style=wx.DEFAULT_FRAME_STYLE, title='Grupo 1 - Jogo de Damas') self._init_utils() self.SetClientSize(wx.Size(799, 623)) self.SetBackgroundColour(wx.Colour(225, 225, 225)) self.SetMinSize(wx.Size(784, 650)) self.Center(wx.BOTH) self.SetMenuBar(self.menuBar1) #here begins my code mysize = (464, 464) mypos = (16, 96) self.panelTabuleiro = PG_panel(wxID_FRMMAINPANELTABULEIRO, 'panelTabuleiro', self, mypos, mysize) The original that was auto-made by the Boa Constructor is the following: self.panelTabuleiro = wx.Panel(id=wxID_FRMMAINPANELTABULEIRO, name='panelTabuleiro', parent=self, pos=wx.Point(16, 96), size=wx.Size(464, 464), style=wx.TAB_TRAVERSAL) self.panelTabuleiro.SetBackgroundColour(wx.Colour(232, 249, 240)) self.panelTabuleiro.SetThemeEnabled(True) self.panelTabuleiro.SetHelpText('Tabuleiro') The error that it gives is: Type error: in method 'new_Panel', expected argument 1 of type 'wxWindow*1 Exception AttributeError: "'PG_panel' object has no attribute 'thread' in ignored Any thoughts ? I appreciate any help. Thank you.

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  • Stuck with a Base64 Decode (php)

    - by jay
    I started decoding a footer from a template but this is pretty much as far as I got since im a noobie @ php. Any assstance will be appreciated as I'm pretty suck. Here's the original file: $o="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"; eval(base64_decode("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")) Here's what I got it down to: $lllllllllll='base64_decode'; $llllllllll='ord'; $lllllllllllll='strlen'; $llllllllllll='chr'; $lllllllll="?".$llllllllllll(62); $lllllllll.=$llllllllll.$llllllllllll(60)."?"; $lll=0;$code=(base64_decode("JGxsbGxsbGxsbGxsPSdiYXNlNjRfZGVjb2RlJzs="));echo $code;eval(base64_decode("JGxsbGxsbGxsbGxsPSdiYXNlNjRfZGVjb2RlJzs="));$ll=0;$code=($lllllllllll("JGxsbGxsbGxsbGw9J29yZCc7"));echo $code;eval($lllllllllll("JGxsbGxsbGxsbGw9J29yZCc7"));$llll=0;$lllll=3;$code=($lllllllllll("JGw9JGxsbGxsbGxsbGxsKCRvKTs="));echo $code;eval($lllllllllll("JGw9JGxsbGxsbGxsbGxsKCRvKTs="));$lllllll=0;$llllll=($llllllllll($l[1])<<8)+$llllllllll($l[2]);$code=($lllllllllll("JGxsbGxsbGxsbGxsbGw9J3N0cmxlbic7"));echo $code;eval($lllllllllll("JGxsbGxsbGxsbGxsbGw9J3N0cmxlbic7"));$lllllllll=16;$llllllll="";for(;$lllll<$lllllllllllll($l);){if($lllllllll==0){$llllll=($llllllllll($l[$lllll++])<<8);$llllll+=$llllllllll($l[$lllll++]);$lllllllll=16;}if($llllll&0x8000){$lll=($llllllllll($l[$lllll++])<<4);$lll+=($llllllllll($l[$lllll])>>4);if($lll){$ll=($llllllllll($l[$lllll++])&0x0f)+3;for($llll=0;$llll<$ll;$llll++)$llllllll[$lllllll+$llll]=$llllllll[$lllllll-$lll+$llll];$lllllll+=$ll;}else{$ll=($llllllllll($l[$lllll++])<<8);$ll+=$llllllllll($l[$lllll++])+16;for($llll=0;$llll<$ll;$llllllll[$lllllll+$llll++]=$llllllllll($l[$lllll]));$lllll++;$lllllll+=$ll;}}else$llllllll[$lllllll++]=$llllllllll($l[$lllll++]);$llllll<<=1;$lllllllll--;}$code=($lllllllllll("JGxsbGxsbGxsbGxsbD0nY2hyJzs="));echo $code;eval($lllllllllll("JGxsbGxsbGxsbGxsbD0nY2hyJzs="));$lllll=0;$code=($lllllllllll("JGxsbGxsbGxsbD0iPyIuJGxsbGxsbGxsbGxsbCg2Mik7"));echo $code;eval($lllllllllll("JGxsbGxsbGxsbD0iPyIuJGxsbGxsbGxsbGxsbCg2Mik7"));$llllllllll="";for(;$lllll<$lllllll;){$llllllllll.=$llllllllllll($llllllll[$lllll++]^0x07);}$code=($lllllllllll("JGxsbGxsbGxsbC49JGxsbGxsbGxsbGwuJGxsbGxsbGxsbGxsbCg2MCkuIj8iOw=="));echo $code;eval($lllllllllll("JGxsbGxsbGxsbC49JGxsbGxsbGxsbGwuJGxsbGxsbGxsbGxsbCg2MCkuIj8iOw=="));$code=($lllllllll);echo $code;eval($lllllllll);

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  • How to sort a Pandas DataFrame according to multiple criteria?

    - by user1715271
    I have the following DataFrame containing song names, their peak chart positions and the number of weeks they spent at position no 1: Song Peak Weeks 76 Paperback Writer 1 16 117 Lady Madonna 1 9 118 Hey Jude 1 27 22 Can't Buy Me Love 1 17 29 A Hard Day's Night 1 14 48 Ticket To Ride 1 14 56 Help! 1 17 109 All You Need Is Love 1 16 173 The Ballad Of John And Yoko 1 13 85 Eleanor Rigby 1 14 87 Yellow Submarine 1 14 20 I Want To Hold Your Hand 1 24 45 I Feel Fine 1 15 60 Day Tripper 1 12 61 We Can Work It Out 1 12 10 She Loves You 1 36 155 Get Back 1 6 8 From Me To You 1 7 115 Hello Goodbye 1 7 2 Please Please Me 2 20 92 Strawberry Fields Forever 2 12 93 Penny Lane 2 13 107 Magical Mystery Tour 2 16 176 Let It Be 2 14 0 Love Me Do 4 26 157 Something 4 9 166 Come Together 4 10 58 Yesterday 8 21 135 Back In The U.S.S.R. 19 3 164 Here Comes The Sun 58 19 96 Sgt. Pepper's Lonely Hearts Club Band 63 12 105 With A Little Help From My Friends 63 7 I'd like to rank these songs in order of popularity, so I'd like to sort them according to the following criteria: songs that reached the highest position come first, but if there is a tie, the songs that remained in the charts for the longest come first. I can't seem to figure out how to do this in Pandas.

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  • Is there a quality, file-size, or other benefit to JPEG sizes being multiples of 8px or 16px?

    - by davebug
    The JPEG compression encoding process splits a given image into blocks of 8x8 pixels, working with these blocks in future lossy and lossless compressions. [source] It is also mentioned that if the image is a multiple 1MCU block (defined as a Minimum Coded Unit, 'usually 16 pixels in both directions') that lossless alterations to a JPEG can be performed. [source] I am working with product images and would like to know both if, and how much benefit can be derived from using multiples of 16 in my final image size (say, using an image with size 480px by 360px) vs. a non-multiple of 16 (such as 484x362). In this example I am not interested in further alterations, editing, or recompression of the final image. To try to get closer to a specific answer where I know there must be largely generalities: Given a 480x360 image that is 64k and saved at maximum quality in Photoshop [example]: Can I expect any quality loss from an image that is 484x362 What amount of file size addition can I expect (for this example, the additional space would be white pixels) Are there any other disadvantages to growing larger than the 8px grid? I know it's arbitrary to use that specific example, but it would still be helpful (for me and potentially any others pondering an image size) to understand what level of compromise I'd be dealing with in breaking the non-8px grid. The key issue here is a debate I've had is whether 8-pixel divisible images are higher quality than images that are not divisible by 8-pixels.

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  • Is safe ( documented behaviour? ) to delete the domain of an iterator in execution

    - by PoorLuzer
    I wanted to know if is safe ( documented behaviour? ) to delete the domain space of an iterator in execution in Python. Consider the code: import os import sys sampleSpace = [ x*x for x in range( 7 ) ] print sampleSpace for dx in sampleSpace: print str( dx ) if dx == 1: del sampleSpace[ 1 ] del sampleSpace[ 3 ] elif dx == 25: del sampleSpace[ -1 ] print sampleSpace 'sampleSpace' is what I call 'the domain space of an iterator' ( if there is a more appropriate word/phrase, lemme know ). What I am doing is deleting values from it while the iterator 'dx' is running through it. Here is what I expect from the code : Iteration versus element being pointed to (*): 0: [*0, 1, 4, 9, 16, 25, 36] 1: [0, *1, 4, 9, 16, 25, 36] ( delete 2nd and 5th element after this iteration ) 2: [0, 4, *9, 25, 36] 3: [0, 4, 9, *25, 36] ( delete -1th element after this iteration ) 4: [0, 4, 9, 25*] ( as the iterator points to nothing/end of list, the loop terminates ) .. and here is what I get: [0, 1, 4, 9, 16, 25, 36] 0 1 9 25 [0, 4, 9, 25] As you can see - what I expect is what I get - which is contrary to the behaviour I have had from other languages in such a scenario. Hence - I wanted to ask you if there is some rule like "the iterator becomes invalid if you mutate its space during iteration" in Python? Is it safe ( documented behaviour? ) in Python to do stuff like this?

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  • iOS TableView crash don't know how. Here is the app

    - by jollyr0ger
    Hi! In my app that you can download here: http://ge.tt/2DDqfJa I've started a discussion but is died here iOS TableView crash loading different data The problem is when I back from viewing the YouTube video to the recipes list, the app crash... And when i select a category for the second time, where have to load a tableview with different data source, it crash. This is the crash log Program received signal: “EXC_BAD_ACCESS”. (gdb) bt #0 0x00f0da63 in objc_msgSend () #1 0x04b27ca0 in ?? () #2 0x00002665 in -[RecipesListController viewWillAppear:] (self=0x4b38a00, _cmd=0x6d81a2, animated=1 '\001') at /Users/claudiocanino/Documents/iOS/CottoMangiato/Classes/RecipesListController.m:67 #3 0x00370c9a in -[UINavigationController _startTransition:fromViewController:toViewController:] () #4 0x0036b606 in -[UINavigationController _startDeferredTransitionIfNeeded] () #5 0x0037283e in -[UINavigationController pushViewController:transition:forceImmediate:] () #6 0x04f49549 in -[UINavigationControllerAccessibility(SafeCategory) pushViewController:transition:forceImmediate:] () #7 0x0036b4a0 in -[UINavigationController pushViewController:animated:] () #8 0x00003919 in -[CategoryViewController tableView:didSelectRowAtIndexPath:] (self=0x4b27ca0, _cmd=0x6d19e3, tableView=0x500c200, indexPath=0x4b2d650) at /Users/claudiocanino/Documents/iOS/CottoMangiato/Classes/CategoryViewCotroller.m:104 #9 0x0032a794 in -[UITableView _selectRowAtIndexPath:animated:scrollPosition:notifyDelegate:] () #10 0x00320d50 in -[UITableView _userSelectRowAtPendingSelectionIndexPath:] () #11 0x000337f6 in __NSFireDelayedPerform () #12 0x00d8cfe3 in __CFRUNLOOP_IS_CALLING_OUT_TO_A_TIMER_CALLBACK_FUNCTION__ () #13 0x00d8e594 in __CFRunLoopDoTimer () #14 0x00ceacc9 in __CFRunLoopRun () #15 0x00cea240 in CFRunLoopRunSpecific () #16 0x00cea161 in CFRunLoopRunInMode () #17 0x016e0268 in GSEventRunModal () #18 0x016e032d in GSEventRun () #19 0x002c342e in UIApplicationMain () #20 0x00001c08 in main (argc=1, argv=0xbfffef58) at /Users/claudiocanino/Documents/iOS/CottoMangiato/main.m:15 Another bt log: (gdb) bt #0 0x00cd76a1 in __CFBasicHashDeallocate () #1 0x00cc2bcb in _CFRelease () #2 0x00002dd6 in -[RecipesListController setRecipesArray:] (self=0x6834d50, _cmd=0x4293, _value=0x4e3bc70) at /Users/claudiocanino/Documents/iOS/CottoMangiato/Classes/RecipesListController.m:16 #3 0x00002665 in -[RecipesListController viewWillAppear:] (self=0x6834d50, _cmd=0x6d81a2, animated=1 '\001') at /Users/claudiocanino/Documents/iOS/CottoMangiato/Classes/RecipesListController.m:67 #4 0x00370c9a in -[UINavigationController _startTransition:fromViewController:toViewController:] () #5 0x0036b606 in -[UINavigationController _startDeferredTransitionIfNeeded] () #6 0x0037283e in -[UINavigationController pushViewController:transition:forceImmediate:] () #7 0x091ac549 in -[UINavigationControllerAccessibility(SafeCategory) pushViewController:transition:forceImmediate:] () #8 0x0036b4a0 in -[UINavigationController pushViewController:animated:] () #9 0x00003919 in -[CategoryViewController tableView:didSelectRowAtIndexPath:] (self=0x4b12970, _cmd=0x6d19e3, tableView=0x5014400, indexPath=0x4b2bd00) at /Users/claudiocanino/Documents/iOS/CottoMangiato/Classes/CategoryViewCotroller.m:104 #10 0x0032a794 in -[UITableView _selectRowAtIndexPath:animated:scrollPosition:notifyDelegate:] () #11 0x00320d50 in -[UITableView _userSelectRowAtPendingSelectionIndexPath:] () #12 0x000337f6 in __NSFireDelayedPerform () #13 0x00d8cfe3 in __CFRUNLOOP_IS_CALLING_OUT_TO_A_TIMER_CALLBACK_FUNCTION__ () #14 0x00d8e594 in __CFRunLoopDoTimer () #15 0x00ceacc9 in __CFRunLoopRun () #16 0x00cea240 in CFRunLoopRunSpecific () #17 0x00cea161 in CFRunLoopRunInMode () #18 0x016e0268 in GSEventRunModal () #19 0x016e032d in GSEventRun () #20 0x002c342e in UIApplicationMain () #21 0x00001c08 in main (argc=1, argv=0xbfffef58) at /Users/claudiocanino/Documents/iOS/CottoMangiato/main.m:15 Thanks

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  • What is wrong with this Asynchronus task?

    - by bluebrain
    the method onPostExecute simply was not executed, I have seen 16 at LogCat but I can not see 16 in LogCAT. I tried to debug it, it seemed that it goes to the first line of the class (package line) after return statement. private class Client extends AsyncTask<Integer, Void, Integer> { protected Integer doInBackground(Integer... params) { Log.e(TAG,10+""); try { socket = new Socket(target, port); Log.e(TAG,11+""); oos = new ObjectOutputStream(socket.getOutputStream()); Log.e(TAG,14+""); ois = new ObjectInputStream(socket.getInputStream()); Log.e(TAG,15+""); } catch (UnknownHostException e) { e.printStackTrace(); } catch (IOException e) { e.printStackTrace(); } Log.e(TAG,16+""); return 1; } protected void onPostExecute(Integer result) { Log.e(TAG,13+""); try { Log.e(TAG,12+""); oos.writeUTF(key); Log.e(TAG,13+""); if (ois.readInt() == OKAY) { isConnected = true; Log.e(TAG,14+""); }else{ Log.e(TAG,15+""); isConnected = false; } } catch (IOException e) { e.printStackTrace(); isClosed = true; } } }

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  • Removing and restoring Window borders

    - by Laurence
    I want to remove the window borders of another process in C#; I used RemoveMenu to remove the borders. It almost works but I have 2 problems left: I need to remove the borders twice, the first time the menu bar still exists. I can’t restore the menu’s This is what I already wrote: public void RemoveBorders(IntPtr WindowHandle, bool Remove) { IntPtr MenuHandle = GetMenu(WindowHandle); if (Remove) { int count = GetMenuItemCount(MenuHandle); for (int i = 0; i < count; i++) RemoveMenu(MenuHandle, 0, (0x40 | 0x10)); } else { SetMenu(WindowHandle,MenuHandle); } int WindowStyle = GetWindowLong(WindowHandle, -16); //Redraw DrawMenuBar(WindowHandle); SetWindowLong(WindowHandle, -16, (WindowStyle & ~0x00080000)); SetWindowLong(WindowHandle, -16, (WindowStyle & ~0x00800000 | 0x00400000)); } Can someone show me what I did wrong? I already tried to save the MenuHandle and restore it later, but that doesn't work.

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  • trying to switch beginning of an array with another

    - by user1874574
    I have a problem where i am trying to swap two arrays so that they switch beginnings. example: array 1 = (1,2,3,4,5,6,7,8) and array 2 = (11,12,13,14,15,16,17,18) i want to end up with the first array being (11,12,13,14,5,6,7,8) and i want the second array to be (1,2,3,4,15,16,17,18) but for some reason i end up with 1=(11,12,13,14,5,6,7,8) and 2=(11,12,13,14,15,16,17,18) my code is provided below, what am i doing wrong? public static void Mutate(Genetic lowest, Genetic secondLowest) { int halfway = (lowest.getPopulation().length)/2; int[] one = lowest.getPopulation(); int[] two = secondLowest.getPopulation(); int[] temp = secondLowest.getPopulation(); int[] temp2 = lowest.getPopulation(); for(int i = 0; i < halfway; i++){ temp[i] = one[i]; } lowest.setPopulation(temp); for(int i = 0; i < lowest.getPopulation().length; i++){ System.out.print(temp[i]); } System.out.println(); for(int i = 0; i < halfway; i++){ temp2[i] = two[i]; } for(int i = 0; i < lowest.getPopulation().length; i++){ System.out.print(temp2[i]); } }

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  • Ubuntu 14.04 Failed to load module udlfb

    - by jar276705
    DisplayLink doesn't load and run. The adapter is recognized and /dev/FB1 is created. USB bus info: Bus 001 Device 006: ID 17e9:0198 DisplayLink Xorg.0.log: X.Org X Server 1.15.1 Release Date: 2014-04-13 [ 44708.386] X Protocol Version 11, Revision 0 [ 44708.389] Build Operating System: Linux 3.2.0-37-generic i686 Ubuntu [ 44708.392] Current Operating System: Linux rrl 3.13.0-24-generic #46-Ubuntu SMP Thu Apr 10 19:08:14 UTC 2014 i686 [ 44708.392] Kernel command line: BOOT_IMAGE=/boot/vmlinuz-3.13.0-24-generic root=UUID=6b719a77-29e0-4668-8f16-57d0d3a73a3f ro quiet splash vt.handoff=7 [ 44708.399] Build Date: 16 April 2014 01:40:08PM [ 44708.402] xorg-server 2:1.15.1-0ubuntu2 (For technical support please see http://www.ubuntu.com/support) [ 44708.405] Current version of pixman: 0.30.2 [ 44708.412] Before reporting problems, check http://wiki.x.org to make sure that you have the latest version. [ 44708.412] Markers: (--) probed, (**) from config file, (==) default setting, (++) from command line, (!!) notice, (II) informational, (WW) warning, (EE) error, (NI) not implemented, (??) unknown. [ 44708.427] (==) Log file: "/var/log/Xorg.0.log", Time: Thu May 1 09:38:27 2014 [ 44708.431] (==) Using config file: "/etc/X11/xorg.conf" [ 44708.434] (==) Using system config directory "/usr/share/X11/xorg.conf.d" [ 44708.435] (==) ServerLayout "X.org Configured" [ 44708.435] (**) |-->Screen "DisplayLinkScreen" (0) [ 44708.435] (**) | |-->Monitor "DisplayLinkMonitor" [ 44708.435] (**) | |-->Device "DisplayLinkDevice" [ 44708.435] (**) |-->Screen "Screen0" (1) [ 44708.435] (**) | |-->Monitor "Monitor0" [ 44708.435] (**) | |-->Device "Card0" [ 44708.435] (**) |-->Input Device "Mouse0" [ 44708.435] (**) |-->Input Device "Keyboard0" [ 44708.435] (==) Automatically adding devices [ 44708.435] (==) Automatically enabling devices [ 44708.435] (==) Automatically adding GPU devices [ 44708.435] (WW) The directory "/usr/share/fonts/X11/cyrillic" does not exist. [ 44708.435] Entry deleted from font path. [ 44708.435] (WW) The directory "/usr/share/fonts/X11/75dpi/" does not exist. [ 44708.435] Entry deleted from font path. [ 44708.435] (WW) The directory "/usr/share/fonts/X11/75dpi" does not exist. [ 44708.435] Entry deleted from font path. [ 44708.435] (WW) The directory "/usr/share/fonts/X11/cyrillic" does not exist. [ 44708.435] Entry deleted from font path. [ 44708.435] (WW) The directory "/usr/share/fonts/X11/75dpi/" does not exist. [ 44708.435] Entry deleted from font path. [ 44708.435] (WW) The directory "/usr/share/fonts/X11/75dpi" does not exist. [ 44708.435] Entry deleted from font path. [ 44708.435] (**) FontPath set to: /usr/share/fonts/X11/misc, /usr/share/fonts/X11/100dpi/:unscaled, /usr/share/fonts/X11/Type1, /usr/share/fonts/X11/100dpi, built-ins, /usr/share/fonts/X11/misc, /usr/share/fonts/X11/100dpi/:unscaled, /usr/share/fonts/X11/Type1, /usr/share/fonts/X11/100dpi, built-ins [ 44708.435] (**) ModulePath set to "/usr/lib/xorg/modules" [ 44708.435] (WW) Hotplugging is on, devices using drivers 'kbd', 'mouse' or 'vmmouse' will be disabled. [ 44708.435] (WW) Disabling Mouse0 [ 44708.435] (WW) Disabling Keyboard0 [ 44708.435] (II) Loader magic: 0xb77106c0 [ 44708.435] (II) Module ABI versions: [ 44708.435] X.Org ANSI C Emulation: 0.4 [ 44708.435] X.Org Video Driver: 15.0 [ 44708.435] X.Org XInput driver : 20.0 [ 44708.435] X.Org Server Extension : 8.0 [ 44708.436] (II) xfree86: Adding drm device (/dev/dri/card0) [ 44708.436] (II) xfree86: Adding drm device (/dev/dri/card1) [ 44708.437] (--) PCI:*(0:1:5:0) 1002:9616:105b:0e26 rev 0, Mem @ 0xf0000000/134217728, 0xfeae0000/65536, 0xfe900000/1048576, I/O @ 0x0000b000/256 [ 44708.441] Initializing built-in extension Generic Event Extension [ 44708.444] Initializing built-in extension SHAPE [ 44708.448] Initializing built-in extension MIT-SHM [ 44708.452] Initializing built-in extension XInputExtension [ 44708.456] Initializing built-in extension XTEST [ 44708.460] Initializing built-in extension BIG-REQUESTS [ 44708.464] Initializing built-in extension SYNC [ 44708.468] Initializing built-in extension XKEYBOARD [ 44708.471] Initializing built-in extension XC-MISC [ 44708.475] Initializing built-in extension SECURITY [ 44708.479] Initializing built-in extension XINERAMA [ 44708.483] Initializing built-in extension XFIXES [ 44708.487] Initializing built-in extension RENDER [ 44708.491] Initializing built-in extension RANDR [ 44708.494] Initializing built-in extension COMPOSITE [ 44708.498] Initializing built-in extension DAMAGE [ 44708.502] Initializing built-in extension MIT-SCREEN-SAVER [ 44708.506] Initializing built-in extension DOUBLE-BUFFER [ 44708.510] Initializing built-in extension RECORD [ 44708.513] Initializing built-in extension DPMS [ 44708.517] Initializing built-in extension Present [ 44708.521] Initializing built-in extension DRI3 [ 44708.525] Initializing built-in extension X-Resource [ 44708.528] Initializing built-in extension XVideo [ 44708.532] Initializing built-in extension XVideo-MotionCompensation [ 44708.535] Initializing built-in extension SELinux [ 44708.539] Initializing built-in extension XFree86-VidModeExtension [ 44708.542] Initializing built-in extension XFree86-DGA [ 44708.546] Initializing built-in extension XFree86-DRI [ 44708.549] Initializing built-in extension DRI2 [ 44708.549] (II) "glx" will be loaded. This was enabled by default and also specified in the config file. [ 44708.549] (WW) "xmir" is not to be loaded by default. Skipping. [ 44708.549] (II) LoadModule: "glx" [ 44708.549] (II) Loading /usr/lib/xorg/modules/extensions/libglx.so [ 44708.550] (II) Module glx: vendor="X.Org Foundation" [ 44708.550] compiled for 1.15.1, module version = 1.0.0 [ 44708.550] ABI class: X.Org Server Extension, version 8.0 [ 44708.550] (==) AIGLX enabled [ 44708.553] Loading extension GLX [ 44708.553] (II) LoadModule: "udlfb" [ 44708.554] (WW) Warning, couldn't open module udlfb [ 44708.554] (II) UnloadModule: "udlfb" [ 44708.554] (II) Unloading udlfb [ 44708.554] (EE) Failed to load module "udlfb" (module does not exist, 0) [ 44708.554] (II) LoadModule: "modesetting" [ 44708.554] (II) Loading /usr/lib/xorg/modules/drivers/modesetting_drv.so [ 44708.554] (II) Module modesetting: vendor="X.Org Foundation" [ 44708.554] compiled for 1.15.0, module version = 0.8.1 [ 44708.554] Module class: X.Org Video Driver [ 44708.554] ABI class: X.Org Video Driver, version 15.0 [ 44708.554] (==) Matched fglrx as autoconfigured driver 0 [ 44708.554] (==) Matched ati as autoconfigured driver 1 [ 44708.554] (==) Matched fglrx as autoconfigured driver 2 [ 44708.554] (==) Matched ati as autoconfigured driver 3 [ 44708.554] (==) Matched modesetting as autoconfigured driver 4 [ 44708.554] (==) Matched fbdev as autoconfigured driver 5 [ 44708.554] (==) Matched vesa as autoconfigured driver 6 [ 44708.554] (==) Assigned the driver to the xf86ConfigLayout [ 44708.554] (II) LoadModule: "fglrx" [ 44708.554] (WW) Warning, couldn't open module fglrx [ 44708.554] (II) UnloadModule: "fglrx" [ 44708.554] (II) Unloading fglrx [ 44708.554] (EE) Failed to load module "fglrx" (module does not exist, 0) [ 44708.554] (II) LoadModule: "ati" [ 44708.554] (II) Loading /usr/lib/xorg/modules/drivers/ati_drv.so [ 44708.554] (II) Module ati: vendor="X.Org Foundation" [ 44708.554] compiled for 1.15.0, module version = 7.3.0 [ 44708.554] Module class: X.Org Video Driver [ 44708.554] ABI class: X.Org Video Driver, version 15.0 [ 44708.554] (II) LoadModule: "radeon" [ 44708.555] (II) Loading /usr/lib/xorg/modules/drivers/radeon_drv.so [ 44708.555] (II) Module radeon: vendor="X.Org Foundation" [ 44708.555] compiled for 1.15.0, module version = 7.3.0 [ 44708.555] Module class: X.Org Video Driver [ 44708.555] ABI class: X.Org Video Driver, version 15.0 [ 44708.555] (II) LoadModule: "modesetting" [ 44708.555] (II) Loading /usr/lib/xorg/modules/drivers/modesetting_drv.so [ 44708.555] (II) Module modesetting: vendor="X.Org Foundation" [ 44708.555] compiled for 1.15.0, module version = 0.8.1 [ 44708.555] Module class: X.Org Video Driver [ 44708.555] ABI class: X.Org Video Driver, version 15.0 [ 44708.555] (II) UnloadModule: "modesetting" [ 44708.555] (II) Unloading modesetting [ 44708.555] (II) Failed to load module "modesetting" (already loaded, 0) [ 44708.555] (II) LoadModule: "fbdev" [ 44708.555] (II) Loading /usr/lib/xorg/modules/drivers/fbdev_drv.so [ 44708.555] (II) Module fbdev: vendor="X.Org Foundation" [ 44708.555] compiled for 1.15.0, module version = 0.4.4 [ 44708.555] Module class: X.Org Video Driver [ 44708.555] ABI class: X.Org Video Driver, version 15.0 [ 44708.555] (II) LoadModule: "vesa" [ 44708.555] (II) Loading /usr/lib/xorg/modules/drivers/vesa_drv.so [ 44708.555] (II) Module vesa: vendor="X.Org Foundation" [ 44708.555] compiled for 1.15.0, module version = 2.3.3 [ 44708.555] Module class: X.Org Video Driver [ 44708.555] ABI class: X.Org Video Driver, version 15.0 [ 44708.555] (II) modesetting: Driver for Modesetting Kernel Drivers: kms [ 44708.555] (II) RADEON: Driver for ATI Radeon chipsets: [ 44708.560] (II) FBDEV: driver for framebuffer: fbdev [ 44708.560] (II) VESA: driver for VESA chipsets: vesa [ 44708.560] (--) using VT number 7 [ 44708.578] (II) modesetting(0): using drv /dev/dri/card0 [ 44708.578] (II) modesetting(G0): using drv /dev/dri/card1 [ 44708.578] (WW) Falling back to old probe method for fbdev [ 44708.578] (II) Loading sub module "fbdevhw" [ 44708.578] (II) LoadModule: "fbdevhw" [ 44708.578] (II) Loading /usr/lib/xorg/modules/libfbdevhw.so [ 44708.578] (II) Module fbdevhw: vendor="X.Org Foundation" [ 44708.578] compiled for 1.15.1, module version = 0.0.2 [ 44708.578] ABI class: X.Org Video Driver, version 15.0 [ 44708.578] (WW) Falling back to old probe method for vesa [ 44708.578] (**) modesetting(0): Depth 16, (--) framebuffer bpp 16 [ 44708.578] (==) modesetting(0): RGB weight 565 [ 44708.578] (==) modesetting(0): Default visual is TrueColor [ 44708.578] (II) modesetting(0): ShadowFB: preferred YES, enabled YES [ 44708.608] (II) modesetting(0): Output VGA-0 using monitor section DisplayLinkMonitor [ 44708.610] (II) modesetting(0): Output DVI-0 has no monitor section [ 44708.640] (II) modesetting(0): EDID for output VGA-0 [ 44708.640] (II) modesetting(0): Manufacturer: ACR Model: 74 Serial#: 2483090993 [ 44708.640] (II) modesetting(0): Year: 2009 Week: 40 [ 44708.640] (II) modesetting(0): EDID Version: 1.3 [ 44708.640] (II) modesetting(0): Analog Display Input, Input Voltage Level: 0.700/0.700 V [ 44708.640] (II) modesetting(0): Sync: Separate [ 44708.640] (II) modesetting(0): Max Image Size [cm]: horiz.: 53 vert.: 29 [ 44708.640] (II) modesetting(0): Gamma: 2.20 [ 44708.640] (II) modesetting(0): DPMS capabilities: StandBy Suspend Off; RGB/Color Display [ 44708.641] (II) modesetting(0): First detailed timing is preferred mode [ 44708.641] (II) modesetting(0): redX: 0.649 redY: 0.338 greenX: 0.289 greenY: 0.609 [ 44708.641] (II) modesetting(0): blueX: 0.146 blueY: 0.070 whiteX: 0.313 whiteY: 0.329 [ 44708.641] (II) modesetting(0): Supported established timings: [ 44708.641] (II) modesetting(0): 720x400@70Hz [ 44708.641] (II) modesetting(0): 640x480@60Hz [ 44708.641] (II) modesetting(0): 640x480@72Hz [ 44708.641] (II) modesetting(0): 640x480@75Hz [ 44708.641] (II) modesetting(0): 800x600@56Hz [ 44708.641] (II) modesetting(0): 800x600@60Hz [ 44708.641] (II) modesetting(0): 800x600@72Hz [ 44708.641] (II) modesetting(0): 800x600@75Hz [ 44708.641] (II) modesetting(0): 1024x768@60Hz [ 44708.641] (II) modesetting(0): 1024x768@70Hz [ 44708.641] (II) modesetting(0): 1024x768@75Hz [ 44708.641] (II) modesetting(0): 1280x1024@75Hz [ 44708.641] (II) modesetting(0): Manufacturer's mask: 0 [ 44708.641] (II) modesetting(0): Supported standard timings: [ 44708.641] (II) modesetting(0): #0: hsize: 1280 vsize 1024 refresh: 60 vid: 32897 [ 44708.641] (II) modesetting(0): #1: hsize: 1152 vsize 864 refresh: 75 vid: 20337 [ 44708.641] (II) modesetting(0): #2: hsize: 1440 vsize 900 refresh: 60 vid: 149 [ 44708.641] (II) modesetting(0): #3: hsize: 1440 vsize 900 refresh: 75 vid: 3989 [ 44708.641] (II) modesetting(0): #4: hsize: 1600 vsize 1200 refresh: 60 vid: 16553 [ 44708.641] (II) modesetting(0): #5: hsize: 1680 vsize 1050 refresh: 60 vid: 179 [ 44708.641] (II) modesetting(0): Supported detailed timing: [ 44708.641] (II) modesetting(0): clock: 138.5 MHz Image Size: 531 x 298 mm [ 44708.641] (II) modesetting(0): h_active: 1920 h_sync: 1968 h_sync_end 2000 h_blank_end 2080 h_border: 0 [ 44708.641] (II) modesetting(0): v_active: 1080 v_sync: 1083 v_sync_end 1088 v_blanking: 1111 v_border: 0 [ 44708.641] (II) modesetting(0): Monitor name: H243H [ 44708.641] (II) modesetting(0): Ranges: V min: 56 V max: 76 Hz, H min: 31 H max: 83 kHz, PixClock max 185 MHz [ 44708.641] (II) modesetting(0): Serial No: LEW0C0044002 [ 44708.641] (II) modesetting(0): EDID (in hex): [ 44708.641] (II) modesetting(0): 00ffffffffffff000472740031f60094 [ 44708.641] (II) modesetting(0): 2813010368351d78ea6085a6564a9c25 [ 44708.641] (II) modesetting(0): 125054afcf008180714f9500950fa940 [ 44708.641] (II) modesetting(0): b300010101011a3680a070381f403020 [ 44708.641] (II) modesetting(0): 3500132a2100001a000000fc00483234 [ 44708.642] (II) modesetting(0): 33480a20202020202020000000fd0038 [ 44708.642] (II) modesetting(0): 4c1f5312000a202020202020000000ff [ 44708.642] (II) modesetting(0): 004c45573043303034343030320a003c [ 44708.642] (II) modesetting(0): Printing probed modes for output VGA-0 [ 44708.642] (II) modesetting(0): Modeline "1280x1024"x75.0 135.00 1280 1296 1440 1688 1024 1025 1028 1066 +hsync +vsync (80.0 kHz UeP) [ 44708.642] (II) modesetting(0): Modeline "1920x1080"x59.9 138.50 1920 1968 2000 2080 1080 1083 1088 1111 +hsync -vsync (66.6 kHz eP) [ 44708.642] (II) modesetting(0): Modeline "1600x1200"x60.0 162.00 1600 1664 1856 2160 1200 1201 1204 1250 +hsync +vsync (75.0 kHz e) [ 44708.642] (II) modesetting(0): Modeline "1680x1050"x60.0 146.25 1680 1784 1960 2240 1050 1053 1059 1089 -hsync +vsync (65.3 kHz e) [ 44708.642] (II) modesetting(0): Modeline "1280x1024"x60.0 108.00 1280 1328 1440 1688 1024 1025 1028 1066 +hsync +vsync (64.0 kHz e) [ 44708.642] (II) modesetting(0): Modeline "1440x900"x75.0 136.75 1440 1536 1688 1936 900 903 909 942 -hsync +vsync (70.6 kHz e) [ 44708.642] (II) modesetting(0): Modeline "1440x900"x59.9 106.50 1440 1520 1672 1904 900 903 909 934 -hsync +vsync (55.9 kHz e) [ 44708.642] (II) modesetting(0): Modeline "1152x864"x75.0 108.00 1152 1216 1344 1600 864 865 868 900 +hsync +vsync (67.5 kHz e) [ 44708.642] (II) modesetting(0): Modeline "1024x768"x75.1 78.80 1024 1040 1136 1312 768 769 772 800 +hsync +vsync (60.1 kHz e) [ 44708.642] (II) modesetting(0): Modeline "1024x768"x70.1 75.00 1024 1048 1184 1328 768 771 777 806 -hsync -vsync (56.5 kHz e) [ 44708.642] (II) modesetting(0): Modeline "1024x768"x60.0 65.00 1024 1048 1184 1344 768 771 777 806 -hsync -vsync (48.4 kHz e) [ 44708.642] (II) modesetting(0): Modeline "800x600"x72.2 50.00 800 856 976 1040 600 637 643 666 +hsync +vsync (48.1 kHz e) [ 44708.642] (II) modesetting(0): Modeline "800x600"x75.0 49.50 800 816 896 1056 600 601 604 625 +hsync +vsync (46.9 kHz e) [ 44708.642] (II) modesetting(0): Modeline "800x600"x60.3 40.00 800 840 968 1056 600 601 605 628 +hsync +vsync (37.9 kHz e) [ 44708.642] (II) modesetting(0): Modeline "800x600"x56.2 36.00 800 824 896 1024 600 601 603 625 +hsync +vsync (35.2 kHz e) [ 44708.642] (II) modesetting(0): Modeline "640x480"x75.0 31.50 640 656 720 840 480 481 484 500 -hsync -vsync (37.5 kHz e) [ 44708.642] (II) modesetting(0): Modeline "640x480"x72.8 31.50 640 664 704 832 480 489 491 520 -hsync -vsync (37.9 kHz e) [ 44708.642] (II) modesetting(0): Modeline "640x480"x60.0 25.20 640 656 752 800 480 490 492 525 -hsync -vsync (31.5 kHz e) [ 44708.642] (II) modesetting(0): Modeline "720x400"x70.1 28.32 720 738 846 900 400 412 414 449 -hsync +vsync (31.5 kHz e) [ 44708.645] (II) modesetting(0): EDID for output DVI-0 [ 44708.645] (II) modesetting(0): Output VGA-0 connected [ 44708.645] (II) modesetting(0): Output DVI-0 disconnected [ 44708.645] (II) modesetting(0): Using user preference for initial modes [ 44708.645] (II) modesetting(0): Output VGA-0 using initial mode 1280x1024 [ 44708.645] (II) modesetting(0): Using default gamma of (1.0, 1.0, 1.0) unless otherwise stated. [ 44708.645] (==) modesetting(0): DPI set to (96, 96) [ 44708.645] (II) Loading sub module "fb" [ 44708.645] (II) LoadModule: "fb" [ 44708.645] (II) Loading /usr/lib/xorg/modules/libfb.so [ 44708.645] (II) Module fb: vendor="X.Org Foundation" [ 44708.645] compiled for 1.15.1, module version = 1.0.0 [ 44708.645] ABI class: X.Org ANSI C Emulation, version 0.4 [ 44708.645] (II) Loading sub module "shadow" [ 44708.645] (II) LoadModule: "shadow" [ 44708.646] (II) Loading /usr/lib/xorg/modules/libshadow.so [ 44708.646] (II) Module shadow: vendor="X.Org Foundation" [ 44708.646] compiled for 1.15.1, module version = 1.1.0 [ 44708.646] ABI class: X.Org ANSI C Emulation, version 0.4 [ 44708.646] (**) modesetting(G0): Depth 16, (--) framebuffer bpp 16 [ 44708.646] (==) modesetting(G0): RGB weight 565 [ 44708.646] (==) modesetting(G0): Default visual is TrueColor [ 44708.646] (II) modesetting(G0): ShadowFB: preferred NO, enabled NO [ 44708.727] (II) modesetting(G0): Output DVI-1-0 using monitor section DisplayLinkMonitor [ 44708.808] (II) modesetting(G0): EDID for output DVI-1-0 [ 44708.808] (II) modesetting(G0): Manufacturer: WDE Model: 1702 Serial#: 0 [ 44708.808] (II) modesetting(G0): Year: 2005 Week: 14 [ 44708.808] (II) modesetting(G0): EDID Version: 1.3 [ 44708.808] (II) modesetting(G0): Analog Display Input, Input Voltage Level: 0.700/0.700 V [ 44708.808] (II) modesetting(G0): Sync: Separate [ 44708.808] (II) modesetting(G0): Max Image Size [cm]: horiz.: 34 vert.: 27 [ 44708.808] (II) modesetting(G0): Gamma: 2.20 [ 44708.808] (II) modesetting(G0): DPMS capabilities: StandBy Suspend Off; RGB/Color Display [ 44708.808] (II) modesetting(G0): Default color space is primary color space [ 44708.808] (II) modesetting(G0): First detailed timing is preferred mode [ 44708.808] (II) modesetting(G0): GTF timings supported [ 44708.808] (II) modesetting(G0): redX: 0.643 redY: 0.352 greenX: 0.283 greenY: 0.608 [ 44708.808] (II) modesetting(G0): blueX: 0.147 blueY: 0.102 whiteX: 0.313 whiteY: 0.329 [ 44708.808] (II) modesetting(G0): Supported established timings: [ 44708.808] (II) modesetting(G0): 720x400@70Hz [ 44708.808] (II) modesetting(G0): 640x480@60Hz [ 44708.808] (II) modesetting(G0): 640x480@67Hz [ 44708.808] (II) modesetting(G0): 640x480@72Hz [ 44708.808] (II) modesetting(G0): 640x480@75Hz [ 44708.808] (II) modesetting(G0): 800x600@56Hz [ 44708.808] (II) modesetting(G0): 800x600@60Hz [ 44708.808] (II) modesetting(G0): 800x600@72Hz [ 44708.808] (II) modesetting(G0): 800x600@75Hz [ 44708.808] (II) modesetting(G0): 832x624@75Hz [ 44708.808] (II) modesetting(G0): 1024x768@60Hz [ 44708.808] (II) modesetting(G0): 1024x768@70Hz [ 44708.808] (II) modesetting(G0): 1024x768@75Hz [ 44708.809] (II) modesetting(G0): 1280x1024@75Hz [ 44708.809] (II) modesetting(G0): Manufacturer's mask: 0 [ 44708.809] (II) modesetting(G0): Supported standard timings: [ 44708.809] (II) modesetting(G0): #0: hsize: 1280 vsize 1024 refresh: 60 vid: 32897 [ 44708.809] (II) modesetting(G0): #1: hsize: 1152 vsize 864 refresh: 75 vid: 20337 [ 44708.809] (II) modesetting(G0): Supported detailed timing: [ 44708.809] (II) modesetting(G0): clock: 108.0 MHz Image Size: 338 x 270 mm [ 44708.809] (II) modesetting(G0): h_active: 1280 h_sync: 1328 h_sync_end 1440 h_blank_end 1688 h_border: 0 [ 44708.809] (II) modesetting(G0): v_active: 1024 v_sync: 1025 v_sync_end 1028 v_blanking: 1066 v_border: 0 [ 44708.809] (II) modesetting(G0): Ranges: V min: 50 V max: 75 Hz, H min: 30 H max: 82 kHz, PixClock max 145 MHz [ 44708.809] (II) modesetting(G0): Monitor name: WDE LCM-17v2 [ 44708.809] (II) modesetting(G0): Serial No: 0 [ 44708.809] (II) modesetting(G0): EDID (in hex): [ 44708.809] (II) modesetting(G0): 00ffffffffffff005c85021700000000 [ 44708.809] (II) modesetting(G0): 0e0f010368221b78ef8bc5a45a489b25 [ 44708.809] (II) modesetting(G0): 1a5054bfef008180714f010101010101 [ 44708.809] (II) modesetting(G0): 010101010101302a009851002a403070 [ 44708.809] (II) modesetting(G0): 1300520e1100001e000000fd00324b1e [ 44708.809] (II) modesetting(G0): 520e000a202020202020000000fc0057 [ 44708.809] (II) modesetting(G0): 4445204c434d2d313776320a000000ff [ 44708.809] (II) modesetting(G0): 00300a202020202020202020202000e7 [ 44708.809] (II) modesetting(G0): Printing probed modes for output DVI-1-0 [ 44708.809] (II) modesetting(G0): Modeline "1280x1024"x60.0 108.00 1280 1328 1440 1688 1024 1025 1028 1066 +hsync +vsync (64.0 kHz UeP) [ 44708.809] (II) modesetting(G0): Modeline "1280x1024"x75.0 135.00 1280 1296 1440 1688 1024 1025 1028 1066 +hsync +vsync (80.0 kHz e) [ 44708.809] (II) modesetting(G0): Modeline "1280x960"x60.0 108.00 1280 1376 1488 1800 960 961 964 1000 +hsync +vsync (60.0 kHz e) [ 44708.809] (II) modesetting(G0): Modeline "1280x800"x74.9 106.50 1280 1360 1488 1696 800 803 809 838 -hsync +vsync (62.8 kHz e) [ 44708.809] (II) modesetting(G0): Modeline "1280x800"x59.8 83.50 1280 1352 1480 1680 800 803 809 831 +hsync -vsync (49.7 kHz e) [ 44708.809] (II) modesetting(G0): Modeline "1152x864"x75.0 108.00 1152 1216 1344 1600 864 865 868 900 +hsync +vsync (67.5 kHz e) [ 44708.809] (II) modesetting(G0): Modeline "1280x768"x74.9 102.25 1280 1360 1488 1696 768 771 778 805 +hsync -vsync (60.3 kHz e) [ 44708.809] (II) modesetting(G0): Modeline "1280x768"x59.9 79.50 1280 1344 1472 1664 768 771 778 798 -hsync +vsync (47.8 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "1024x768"x75.1 78.80 1024 1040 1136 1312 768 769 772 800 +hsync +vsync (60.1 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "1024x768"x70.1 75.00 1024 1048 1184 1328 768 771 777 806 -hsync -vsync (56.5 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "1024x768"x60.0 65.00 1024 1048 1184 1344 768 771 777 806 -hsync -vsync (48.4 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "1024x576"x60.0 46.97 1024 1064 1168 1312 576 577 580 597 -hsync +vsync (35.8 kHz) [ 44708.810] (II) modesetting(G0): Modeline "832x624"x74.6 57.28 832 864 928 1152 624 625 628 667 -hsync -vsync (49.7 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "800x600"x72.2 50.00 800 856 976 1040 600 637 643 666 +hsync +vsync (48.1 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "800x600"x75.0 49.50 800 816 896 1056 600 601 604 625 +hsync +vsync (46.9 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "800x600"x60.3 40.00 800 840 968 1056 600 601 605 628 +hsync +vsync (37.9 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "800x600"x56.2 36.00 800 824 896 1024 600 601 603 625 +hsync +vsync (35.2 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "848x480"x60.0 33.75 848 864 976 1088 480 486 494 517 +hsync +vsync (31.0 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "640x480"x75.0 31.50 640 656 720 840 480 481 484 500 -hsync -vsync (37.5 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "640x480"x72.8 31.50 640 664 704 832 480 489 491 520 -hsync -vsync (37.9 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "640x480"x66.7 30.24 640 704 768 864 480 483 486 525 -hsync -vsync (35.0 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "640x480"x60.0 25.20 640 656 752 800 480 490 492 525 -hsync -vsync (31.5 kHz e) [ 44708.810] (II) modesetting(G0): Modeline "720x400"x70.1 28.32 720 738 846 900 400 412 414 449 -hsync +vsync (31.5 kHz e) [ 44708.810] (II) modesetting(G0): Using default gamma of (1.0, 1.0, 1.0) unless otherwise stated. [ 44708.810] (==) modesetting(G0): DPI set to (96, 96) [ 44708.810] (II) Loading sub module "fb" [ 44708.810] (II) LoadModule: "fb" [ 44708.810] (II) Loading /usr/lib/xorg/modules/libfb.so [ 44708.810] (II) Module fb: vendor="X.Org Foundation" [ 44708.810] compiled for 1.15.1, module version = 1.0.0 [ 44708.811] ABI class: X.Org ANSI C Emulation, version 0.4 [ 44708.811] (II) UnloadModule: "radeon" [ 44708.811] (II) Unloading radeon [ 44708.811] (II) UnloadModule: "fbdev" [ 44708.811] (II) Unloading fbdev [ 44708.811] (II) UnloadSubModule: "fbdevhw" [ 44708.811] (II) Unloading fbdevhw [ 44708.811] (II) UnloadModule: "vesa" [ 44708.811] (II) Unloading vesa [ 44708.811] (==) modesetting(G0): Backing store enabled [ 44708.811] (==) modesetting(G0): Silken mouse enabled [ 44708.812] (II) modesetting(G0): RandR 1.2 enabled, ignore the following RandR disabled message. [ 44708.812] (==) modesetting(G0): DPMS enabled [ 44708.812] (WW) modesetting(G0): Option "fbdev" is not used [ 44708.812] (==) modesetting(0): Backing store enabled [ 44708.812] (==) modesetting(0): Silken mouse enabled [ 44708.812] (II) modesetting(0): RandR 1.2 enabled, ignore the following RandR disabled message. [ 44708.812] (==) modesetting(0): DPMS enabled [ 44708.812] (WW) modesetting(0): Option "fbdev" is not used [ 44708.856] (--) RandR disabled [ 44708.867] (II) SELinux: Disabled on system [ 44708.868] (II) AIGLX: Screen 0 is not DRI2 capable [ 44708.868] (EE) AIGLX: reverting to software rendering [ 44708.878] (II) AIGLX: Loaded and initialized swrast [ 44708.878] (II) GLX: Initialized DRISWRAST GL provider for screen 0 [ 44708.879] (II) modesetting(G0): Damage tracking initialized [ 44708.879] (II) modesetting(0): Damage tracking initialized [ 44708.879] (II) modesetting(0): Setting screen physical size to 338 x 270 [ 44708.900] (II) XKB: generating xkmfile /tmp/server-B20D7FC79C7F597315E3E501AEF10E0D866E8E92.xkm [ 44708.918] (II) config/udev: Adding input device Power Button (/dev/input/event1) [ 44708.918] (**) Power Button: Applying InputClass "evdev keyboard catchall" [ 44708.918] (II) LoadModule: "evdev" [ 44708.918] (II) Loading /usr/lib/xorg/modules/input/evdev_drv.so [ 44708.918] (II) Module evdev: vendor="X.Org Foundation" [ 44708.918] compiled for 1.15.0, module version = 2.8.2 [ 44708.918] Module class: X.Org XInput Driver [ 44708.918] ABI class: X.Org XInput driver, version 20.0 [ 44708.918] (II) Using input driver 'evdev' for 'Power Button' [ 44708.918] (**) Power Button: always reports core events [ 44708.918] (**) evdev: Power Button: Device: "/dev/input/event1" [ 44708.918] (--) evdev: Power Button: Vendor 0 Product 0x1 [ 44708.918] (--) evdev: Power Button: Found keys [ 44708.918] (II) evdev: Power Button: Configuring as keyboard [ 44708.918] (**) Option "config_info" "udev:/sys/devices/LNXSYSTM:00/LNXPWRBN:00/input/input1/event1" [ 44708.918] (II) XINPUT: Adding extended input device "Power Button" (type: KEYBOARD, id 6) [ 44708.918] (**) Option "xkb_rules" "evdev" [ 44708.918] (**) Option "xkb_model" "pc105" [ 44708.918] (**) Option "xkb_layout" "us" [ 44708.919] (II) config/udev: Adding input device Power Button (/dev/input/event0) [ 44708.919] (**) Power Button: Applying InputClass "evdev keyboard catchall" [ 44708.919] (II) Using input driver 'evdev' for 'Power Button' [ 44708.919] (**) Power Button: always reports core events [ 44708.919] (**) evdev: Power Button: Device: "/dev/input/event0" [ 44708.919] (--) evdev: Power Button: Vendor 0 Product 0x1 [ 44708.919] (--) evdev: Power Button: Found keys [ 44708.919] (II) evdev: Power Button: Configuring as keyboard [ 44708.919] (**) Option "config_info" "udev:/sys/devices/LNXSYSTM:00/device:00/PNP0C0C:00/input/input0/event0" Is there anything I can do to fix this problem.

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  • C#/.NET Little Wonders: The ConcurrentDictionary

    - by James Michael Hare
    Once again we consider some of the lesser known classes and keywords of C#.  In this series of posts, we will discuss how the concurrent collections have been developed to help alleviate these multi-threading concerns.  Last week’s post began with a general introduction and discussed the ConcurrentStack<T> and ConcurrentQueue<T>.  Today's post discusses the ConcurrentDictionary<T> (originally I had intended to discuss ConcurrentBag this week as well, but ConcurrentDictionary had enough information to create a very full post on its own!).  Finally next week, we shall close with a discussion of the ConcurrentBag<T> and BlockingCollection<T>. For more of the "Little Wonders" posts, see the index here. Recap As you'll recall from the previous post, the original collections were object-based containers that accomplished synchronization through a Synchronized member.  While these were convenient because you didn't have to worry about writing your own synchronization logic, they were a bit too finely grained and if you needed to perform multiple operations under one lock, the automatic synchronization didn't buy much. With the advent of .NET 2.0, the original collections were succeeded by the generic collections which are fully type-safe, but eschew automatic synchronization.  This cuts both ways in that you have a lot more control as a developer over when and how fine-grained you want to synchronize, but on the other hand if you just want simple synchronization it creates more work. With .NET 4.0, we get the best of both worlds in generic collections.  A new breed of collections was born called the concurrent collections in the System.Collections.Concurrent namespace.  These amazing collections are fine-tuned to have best overall performance for situations requiring concurrent access.  They are not meant to replace the generic collections, but to simply be an alternative to creating your own locking mechanisms. Among those concurrent collections were the ConcurrentStack<T> and ConcurrentQueue<T> which provide classic LIFO and FIFO collections with a concurrent twist.  As we saw, some of the traditional methods that required calls to be made in a certain order (like checking for not IsEmpty before calling Pop()) were replaced in favor of an umbrella operation that combined both under one lock (like TryPop()). Now, let's take a look at the next in our series of concurrent collections!For some excellent information on the performance of the concurrent collections and how they perform compared to a traditional brute-force locking strategy, see this wonderful whitepaper by the Microsoft Parallel Computing Platform team here. ConcurrentDictionary – the fully thread-safe dictionary The ConcurrentDictionary<TKey,TValue> is the thread-safe counterpart to the generic Dictionary<TKey, TValue> collection.  Obviously, both are designed for quick – O(1) – lookups of data based on a key.  If you think of algorithms where you need lightning fast lookups of data and don’t care whether the data is maintained in any particular ordering or not, the unsorted dictionaries are generally the best way to go. Note: as a side note, there are sorted implementations of IDictionary, namely SortedDictionary and SortedList which are stored as an ordered tree and a ordered list respectively.  While these are not as fast as the non-sorted dictionaries – they are O(log2 n) – they are a great combination of both speed and ordering -- and still greatly outperform a linear search. Now, once again keep in mind that if all you need to do is load a collection once and then allow multi-threaded reading you do not need any locking.  Examples of this tend to be situations where you load a lookup or translation table once at program start, then keep it in memory for read-only reference.  In such cases locking is completely non-productive. However, most of the time when we need a concurrent dictionary we are interleaving both reads and updates.  This is where the ConcurrentDictionary really shines!  It achieves its thread-safety with no common lock to improve efficiency.  It actually uses a series of locks to provide concurrent updates, and has lockless reads!  This means that the ConcurrentDictionary gets even more efficient the higher the ratio of reads-to-writes you have. ConcurrentDictionary and Dictionary differences For the most part, the ConcurrentDictionary<TKey,TValue> behaves like it’s Dictionary<TKey,TValue> counterpart with a few differences.  Some notable examples of which are: Add() does not exist in the concurrent dictionary. This means you must use TryAdd(), AddOrUpdate(), or GetOrAdd().  It also means that you can’t use a collection initializer with the concurrent dictionary. TryAdd() replaced Add() to attempt atomic, safe adds. Because Add() only succeeds if the item doesn’t already exist, we need an atomic operation to check if the item exists, and if not add it while still under an atomic lock. TryUpdate() was added to attempt atomic, safe updates. If we want to update an item, we must make sure it exists first and that the original value is what we expected it to be.  If all these are true, we can update the item under one atomic step. TryRemove() was added to attempt atomic, safe removes. To safely attempt to remove a value we need to see if the key exists first, this checks for existence and removes under an atomic lock. AddOrUpdate() was added to attempt an thread-safe “upsert”. There are many times where you want to insert into a dictionary if the key doesn’t exist, or update the value if it does.  This allows you to make a thread-safe add-or-update. GetOrAdd() was added to attempt an thread-safe query/insert. Sometimes, you want to query for whether an item exists in the cache, and if it doesn’t insert a starting value for it.  This allows you to get the value if it exists and insert if not. Count, Keys, Values properties take a snapshot of the dictionary. Accessing these properties may interfere with add and update performance and should be used with caution. ToArray() returns a static snapshot of the dictionary. That is, the dictionary is locked, and then copied to an array as a O(n) operation.  GetEnumerator() is thread-safe and efficient, but allows dirty reads. Because reads require no locking, you can safely iterate over the contents of the dictionary.  The only downside is that, depending on timing, you may get dirty reads. Dirty reads during iteration The last point on GetEnumerator() bears some explanation.  Picture a scenario in which you call GetEnumerator() (or iterate using a foreach, etc.) and then, during that iteration the dictionary gets updated.  This may not sound like a big deal, but it can lead to inconsistent results if used incorrectly.  The problem is that items you already iterated over that are updated a split second after don’t show the update, but items that you iterate over that were updated a split second before do show the update.  Thus you may get a combination of items that are “stale” because you iterated before the update, and “fresh” because they were updated after GetEnumerator() but before the iteration reached them. Let’s illustrate with an example, let’s say you load up a concurrent dictionary like this: 1: // load up a dictionary. 2: var dictionary = new ConcurrentDictionary<string, int>(); 3:  4: dictionary["A"] = 1; 5: dictionary["B"] = 2; 6: dictionary["C"] = 3; 7: dictionary["D"] = 4; 8: dictionary["E"] = 5; 9: dictionary["F"] = 6; Then you have one task (using the wonderful TPL!) to iterate using dirty reads: 1: // attempt iteration in a separate thread 2: var iterationTask = new Task(() => 3: { 4: // iterates using a dirty read 5: foreach (var pair in dictionary) 6: { 7: Console.WriteLine(pair.Key + ":" + pair.Value); 8: } 9: }); And one task to attempt updates in a separate thread (probably): 1: // attempt updates in a separate thread 2: var updateTask = new Task(() => 3: { 4: // iterates, and updates the value by one 5: foreach (var pair in dictionary) 6: { 7: dictionary[pair.Key] = pair.Value + 1; 8: } 9: }); Now that we’ve done this, we can fire up both tasks and wait for them to complete: 1: // start both tasks 2: updateTask.Start(); 3: iterationTask.Start(); 4:  5: // wait for both to complete. 6: Task.WaitAll(updateTask, iterationTask); Now, if I you didn’t know about the dirty reads, you may have expected to see the iteration before the updates (such as A:1, B:2, C:3, D:4, E:5, F:6).  However, because the reads are dirty, we will quite possibly get a combination of some updated, some original.  My own run netted this result: 1: F:6 2: E:6 3: D:5 4: C:4 5: B:3 6: A:2 Note that, of course, iteration is not in order because ConcurrentDictionary, like Dictionary, is unordered.  Also note that both E and F show the value 6.  This is because the output task reached F before the update, but the updates for the rest of the items occurred before their output (probably because console output is very slow, comparatively). If we want to always guarantee that we will get a consistent snapshot to iterate over (that is, at the point we ask for it we see precisely what is in the dictionary and no subsequent updates during iteration), we should iterate over a call to ToArray() instead: 1: // attempt iteration in a separate thread 2: var iterationTask = new Task(() => 3: { 4: // iterates using a dirty read 5: foreach (var pair in dictionary.ToArray()) 6: { 7: Console.WriteLine(pair.Key + ":" + pair.Value); 8: } 9: }); The atomic Try…() methods As you can imagine TryAdd() and TryRemove() have few surprises.  Both first check the existence of the item to determine if it can be added or removed based on whether or not the key currently exists in the dictionary: 1: // try add attempts an add and returns false if it already exists 2: if (dictionary.TryAdd("G", 7)) 3: Console.WriteLine("G did not exist, now inserted with 7"); 4: else 5: Console.WriteLine("G already existed, insert failed."); TryRemove() also has the virtue of returning the value portion of the removed entry matching the given key: 1: // attempt to remove the value, if it exists it is removed and the original is returned 2: int removedValue; 3: if (dictionary.TryRemove("C", out removedValue)) 4: Console.WriteLine("Removed C and its value was " + removedValue); 5: else 6: Console.WriteLine("C did not exist, remove failed."); Now TryUpdate() is an interesting creature.  You might think from it’s name that TryUpdate() first checks for an item’s existence, and then updates if the item exists, otherwise it returns false.  Well, note quite... It turns out when you call TryUpdate() on a concurrent dictionary, you pass it not only the new value you want it to have, but also the value you expected it to have before the update.  If the item exists in the dictionary, and it has the value you expected, it will update it to the new value atomically and return true.  If the item is not in the dictionary or does not have the value you expected, it is not modified and false is returned. 1: // attempt to update the value, if it exists and if it has the expected original value 2: if (dictionary.TryUpdate("G", 42, 7)) 3: Console.WriteLine("G existed and was 7, now it's 42."); 4: else 5: Console.WriteLine("G either didn't exist, or wasn't 7."); The composite Add methods The ConcurrentDictionary also has composite add methods that can be used to perform updates and gets, with an add if the item is not existing at the time of the update or get. The first of these, AddOrUpdate(), allows you to add a new item to the dictionary if it doesn’t exist, or update the existing item if it does.  For example, let’s say you are creating a dictionary of counts of stock ticker symbols you’ve subscribed to from a market data feed: 1: public sealed class SubscriptionManager 2: { 3: private readonly ConcurrentDictionary<string, int> _subscriptions = new ConcurrentDictionary<string, int>(); 4:  5: // adds a new subscription, or increments the count of the existing one. 6: public void AddSubscription(string tickerKey) 7: { 8: // add a new subscription with count of 1, or update existing count by 1 if exists 9: var resultCount = _subscriptions.AddOrUpdate(tickerKey, 1, (symbol, count) => count + 1); 10:  11: // now check the result to see if we just incremented the count, or inserted first count 12: if (resultCount == 1) 13: { 14: // subscribe to symbol... 15: } 16: } 17: } Notice the update value factory Func delegate.  If the key does not exist in the dictionary, the add value is used (in this case 1 representing the first subscription for this symbol), but if the key already exists, it passes the key and current value to the update delegate which computes the new value to be stored in the dictionary.  The return result of this operation is the value used (in our case: 1 if added, existing value + 1 if updated). Likewise, the GetOrAdd() allows you to attempt to retrieve a value from the dictionary, and if the value does not currently exist in the dictionary it will insert a value.  This can be handy in cases where perhaps you wish to cache data, and thus you would query the cache to see if the item exists, and if it doesn’t you would put the item into the cache for the first time: 1: public sealed class PriceCache 2: { 3: private readonly ConcurrentDictionary<string, double> _cache = new ConcurrentDictionary<string, double>(); 4:  5: // adds a new subscription, or increments the count of the existing one. 6: public double QueryPrice(string tickerKey) 7: { 8: // check for the price in the cache, if it doesn't exist it will call the delegate to create value. 9: return _cache.GetOrAdd(tickerKey, symbol => GetCurrentPrice(symbol)); 10: } 11:  12: private double GetCurrentPrice(string tickerKey) 13: { 14: // do code to calculate actual true price. 15: } 16: } There are other variations of these two methods which vary whether a value is provided or a factory delegate, but otherwise they work much the same. Oddities with the composite Add methods The AddOrUpdate() and GetOrAdd() methods are totally thread-safe, on this you may rely, but they are not atomic.  It is important to note that the methods that use delegates execute those delegates outside of the lock.  This was done intentionally so that a user delegate (of which the ConcurrentDictionary has no control of course) does not take too long and lock out other threads. This is not necessarily an issue, per se, but it is something you must consider in your design.  The main thing to consider is that your delegate may get called to generate an item, but that item may not be the one returned!  Consider this scenario: A calls GetOrAdd and sees that the key does not currently exist, so it calls the delegate.  Now thread B also calls GetOrAdd and also sees that the key does not currently exist, and for whatever reason in this race condition it’s delegate completes first and it adds its new value to the dictionary.  Now A is done and goes to get the lock, and now sees that the item now exists.  In this case even though it called the delegate to create the item, it will pitch it because an item arrived between the time it attempted to create one and it attempted to add it. Let’s illustrate, assume this totally contrived example program which has a dictionary of char to int.  And in this dictionary we want to store a char and it’s ordinal (that is, A = 1, B = 2, etc).  So for our value generator, we will simply increment the previous value in a thread-safe way (perhaps using Interlocked): 1: public static class Program 2: { 3: private static int _nextNumber = 0; 4:  5: // the holder of the char to ordinal 6: private static ConcurrentDictionary<char, int> _dictionary 7: = new ConcurrentDictionary<char, int>(); 8:  9: // get the next id value 10: public static int NextId 11: { 12: get { return Interlocked.Increment(ref _nextNumber); } 13: } Then, we add a method that will perform our insert: 1: public static void Inserter() 2: { 3: for (int i = 0; i < 26; i++) 4: { 5: _dictionary.GetOrAdd((char)('A' + i), key => NextId); 6: } 7: } Finally, we run our test by starting two tasks to do this work and get the results… 1: public static void Main() 2: { 3: // 3 tasks attempting to get/insert 4: var tasks = new List<Task> 5: { 6: new Task(Inserter), 7: new Task(Inserter) 8: }; 9:  10: tasks.ForEach(t => t.Start()); 11: Task.WaitAll(tasks.ToArray()); 12:  13: foreach (var pair in _dictionary.OrderBy(p => p.Key)) 14: { 15: Console.WriteLine(pair.Key + ":" + pair.Value); 16: } 17: } If you run this with only one task, you get the expected A:1, B:2, ..., Z:26.  But running this in parallel you will get something a bit more complex.  My run netted these results: 1: A:1 2: B:3 3: C:4 4: D:5 5: E:6 6: F:7 7: G:8 8: H:9 9: I:10 10: J:11 11: K:12 12: L:13 13: M:14 14: N:15 15: O:16 16: P:17 17: Q:18 18: R:19 19: S:20 20: T:21 21: U:22 22: V:23 23: W:24 24: X:25 25: Y:26 26: Z:27 Notice that B is 3?  This is most likely because both threads attempted to call GetOrAdd() at roughly the same time and both saw that B did not exist, thus they both called the generator and one thread got back 2 and the other got back 3.  However, only one of those threads can get the lock at a time for the actual insert, and thus the one that generated the 3 won and the 3 was inserted and the 2 got discarded.  This is why on these methods your factory delegates should be careful not to have any logic that would be unsafe if the value they generate will be pitched in favor of another item generated at roughly the same time.  As such, it is probably a good idea to keep those generators as stateless as possible. Summary The ConcurrentDictionary is a very efficient and thread-safe version of the Dictionary generic collection.  It has all the benefits of type-safety that it’s generic collection counterpart does, and in addition is extremely efficient especially when there are more reads than writes concurrently. Tweet Technorati Tags: C#, .NET, Concurrent Collections, Collections, Little Wonders, Black Rabbit Coder,James Michael Hare

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  • lost the vertical scroll function in touchpad after upgrading from 13.04 to 13.10

    - by Lars Lundblad
    just upgraded from Ubuntu 13.04 to Ubuntu 13.10, my Laptop is a Sony SVE1512c6ew, scrolling worked perfectly in Ubuntu 13.04, doesnt work at all in 13.10 Runs Ubuntu 13.10 64bits (btw, tested it i Windows 8 environment works there)Hardware OK, have seen a number of other users with the same problem, well for starters have followed the tip on using the dconf editor, following the path: org gnome settings-daemon peripherals touchpad boxed in all for sure... still cant get vertical scroll...... Any ideas??? Thanks in advance Lars Lundblad / please feel free to mail answers to [email protected] Input device information according to Udev: Input device Subsystem: input Devtype: n/a Name: input7 Number: 7 Sysfs_path: /sys/devices/platform/i8042/serio1/input/input7 Driver: n/a Action: n/a Seqnum: n/a Device type: n/a Device number: 0 Device file: n/a Device file symlinks: n/a Touchpad device Subsystem: input Devtype: n/a Name: mouse1 Number: 1 Sysfs_path: /sys/devices/platform/i8042/serio1/input/input7/mouse1 Driver: n/a Action: n/a Seqnum: n/a Device type: char Device number: 3361 Device file: /dev/input/mouse1 Device file symlinks: /dev/input/by-path/platform-i8042-serio-1-mouse

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  • Sound driver for motherboard gigabyte ga-g1975x-c (Creative Sound Blaster Live 24-bit) (alsa, ca0106)

    - by Mikl
    My motherboard is gigabyte ga-g1975x-c with integrated audio "Creative Sound Blaster Live 24-bit". I have installed Ubuntu 10.10, and there was no sound at all. Alsa drivers was already installed. Finally after long searching, i have found how to make my sound work. /etc/modprobe.d/alsa-base.conf: options snd-ca0106 subsystem=0x10121102 //i have added this line and restart After restarting my speakers and microfon works fine. Maybe somebody knows different/better subsystem code for my sound card???

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  • Something confusing about Single Responsibility Principle

    - by user1483278
    1) In fact if two responsibilities are always expected to change at the same time you arguably should not separate them into different classes as this would lead, to quote Martin, to a "smell of Needless Complexity". The same is the case for responsibilities that never change - the behavior is invariant, and there is no need to split it. I assume even if non-related responsibilities are always expected to change for the same reason ( or if they never change ), we still shouldn't put them in the same class, since this would still violate high cohesion principle? 2) I've found two quite different definitions for SRP: Single Responsibility Principle says that a subsystem, module, class, or even a function, should not have more than one reason to change. and There should never be more than one reason for a class to change Doesn't the latter definition narrow SRP to a class level? If so, isn't first quote wrong by claiming that SRP can also be applied at subsystem, module and function levels? thank you

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  • Correcting color-shifted mirrored i915 driver in 12.04?

    - by Will Martin
    I was called in to fix a friend's malfunctioning HP Pavilion. She's not sure exactly which model, but the sticker on the bottom says "G60". The problem was a failed upgrade to 12.04. I was able to mostly repair it with sudo apt-get -f install, which ran setup and configuration for several hundred packages. The biggest problem at the moment is Xorg. The login screen (lightdm) loads normally but at a reduced resolution (1024x768 instead of 1366x768). But once you log in, it looks like this: Observe that the colors of the dock on the left and the bar at the top are normal. But the background is filled with bizarro color-skewed ghost images of the desktop. In all cases, the actual contents of any programs you run is a totally illegible mess, except that the bar at the top of any program windows looks and acts normally. And the ghost images are interactive! For example, if you click the icon in the top right corner to get the "shut down" menu, the same menu will appear in the ghost images below. Starting a terminal will start a terminal window in both the real desktop and the ghost images, and moving it around updates both the real and ghost desktops. I suspect Xorg is using some kind of wrong driver and/or parameter for the graphics hardware. Here is the graphics-relevant portion of the lspci -v output: 00:00.0 Host bridge: Intel Corporation Mobile 4 Series Chipset Memory Controller Hub (rev 09) Subsystem: Hewlett-Packard Company Device 360b Flags: bus master, fast devsel, latency 0 Capabilities: [e0] Vendor Specific Information: Len=0a <?> Kernel driver in use: agpgart-intel 00:02.0 VGA compatible controller: Intel Corporation Mobile 4 Series Chipset Integrated Graphics Controller (rev 09) (prog-if 00 [VGA controller]) Subsystem: Hewlett-Packard Company Device 360b Flags: bus master, fast devsel, latency 0, IRQ 44 Memory at d0000000 (64-bit, non-prefetchable) [size=4M] Memory at c0000000 (64-bit, prefetchable) [size=256M] I/O ports at 5110 [size=8] Expansion ROM at <unassigned> [disabled] Capabilities: [90] MSI: Enable+ Count=1/1 Maskable- 64bit- Capabilities: [d0] Power Management version 3 Kernel driver in use: i915 Kernel modules: i915 00:02.1 Display controller: Intel Corporation Mobile 4 Series Chipset Integrated Graphics Controller (rev 09) Subsystem: Hewlett-Packard Company Device 360b Flags: bus master, fast devsel, latency 0 Memory at d2500000 (64-bit, non-prefetchable) [size=1M] Capabilities: [d0] Power Management version 3 I'm not sure what to check next. I would ordinarily check xorg.conf to see what it says, but that apparently doesn't exist any more, and my googling has not yielded any useful techniques for getting Xorg to tell me what settings it decided to use. The weird part is that it works fine on the login screen. It's only when you actually log in as a user that the display gets screwed up. Suggestions?

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  • One True Event Loop

    - by CyberShadow
    Simple programs that collect data from only one system need only one event loop. For example, Windows applications have the message loop, POSIX network programs usually have a select/epoll/etc. loop at their core, pure SDL games use SDL's event loop. But what if you need to collect events from several subsystems? Such as an SDL game which doesn't use SDL_net for networking. I can think of several solutions: Polling (ugh) Put each event loop in its own thread, and: Send messages to the main thread, which collects and processes the events, or Place the event-processing code of each thread in a critical section, so that the threads can wait for events asynchronously but process them synchronously Choose one subsystem for the main event loop, and pass events from other subsystems via that subsystem as custom messages (for example, the Windows message loop and custom messages, or a socket select() loop and passing events via a loopback connection). Option 2.1 is more interesting on platforms where message-passing is a well-developed threading primitive (e.g. in the D programming language), but 2.2 looks like the best option to me.

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  • How can I determine which GPU card is running at PCI Express 2.0 x16 & which is using x8?

    - by M. Tibbits
    Is there a way to determine the speed of the PCI Express connection to a specific card? I have three cards plugged in: two Nvidia GTX 480's (one at x16 & and one at x8) one Nvidia GTX 460 running at x8 Is there some way, either by a function call in C or an option to lspci that I can determine the bus speed of the graphics cards? When I only use one of the cards for my CUDA program, I'd like to use the one which is running at x16. Thanks! Note: lspci -vvv dumps out For the two GTX 480s. I don't see any differences that pertain to bus speed. 03:00.0 VGA compatible controller: nVidia Corporation Device 06c0 (rev a3) Subsystem: eVga.com. Corp. Device 1480 Control: I/O- Mem+ BusMaster+ SpecCycle- MemWINV- VGASnoop- ParErr- Stepping- SERR- FastB2B- DisINTx- Status: Cap+ 66MHz- UDF- FastB2B- ParErr- DEVSEL=fast >TAbort- <TAbort- <MAbort- >SERR- <PERR- INTx- Latency: 0 Interrupt: pin A routed to IRQ 16 Region 0: Memory at d4000000 (32-bit, non-prefetchable) [size=32M] Region 1: Memory at b0000000 (64-bit, prefetchable) [size=128M] Region 3: Memory at bc000000 (64-bit, prefetchable) [size=64M] Region 5: I/O ports at df00 [disabled] [size=128] [virtual] Expansion ROM at b8000000 [disabled] [size=512K] Capabilities: <access denied> Kernel driver in use: nvidia Kernel modules: nvidia, nvidiafb, nouveau 03:00.1 Audio device: nVidia Corporation Device 0be5 (rev a1) Subsystem: eVga.com. Corp. Device 1480 Control: I/O- Mem- BusMaster- SpecCycle- MemWINV- VGASnoop- ParErr- Stepping- SERR- FastB2B- DisINTx- Status: Cap+ 66MHz- UDF- FastB2B- ParErr- DEVSEL=fast >TAbort- <TAbort- <MAbort- >SERR- <PERR- INTx- Interrupt: pin B routed to IRQ 5 Region 0: [virtual] Memory at d7ffc000 (32-bit, non-prefetchable) [disabled] [size=16K] Capabilities: <access denied> 04:00.0 VGA compatible controller: nVidia Corporation Device 06c0 (rev a3) Subsystem: eVga.com. Corp. Device 1480 Control: I/O+ Mem+ BusMaster+ SpecCycle- MemWINV- VGASnoop- ParErr- Stepping- SERR- FastB2B- DisINTx- Status: Cap+ 66MHz- UDF- FastB2B- ParErr- DEVSEL=fast >TAbort- <TAbort- <MAbort- >SERR- <PERR- INTx- Latency: 0 Interrupt: pin A routed to IRQ 16 Region 0: Memory at dc000000 (32-bit, non-prefetchable) [size=32M] Region 1: Memory at c0000000 (64-bit, prefetchable) [size=128M] Region 3: Memory at cc000000 (64-bit, prefetchable) [size=64M] Region 5: I/O ports at cf00 [size=128] [virtual] Expansion ROM at c8000000 [disabled] [size=512K] Capabilities: <access denied> Kernel driver in use: nvidia Kernel modules: nvidia, nvidiafb, nouveau 04:00.1 Audio device: nVidia Corporation Device 0be5 (rev a1) Subsystem: eVga.com. Corp. Device 1480 Control: I/O- Mem+ BusMaster+ SpecCycle- MemWINV- VGASnoop- ParErr- Stepping- SERR- FastB2B- DisINTx- Status: Cap+ 66MHz- UDF- FastB2B- ParErr- DEVSEL=fast >TAbort- <TAbort- <MAbort- >SERR- <PERR- INTx- Latency: 0, Cache Line Size: 64 bytes Interrupt: pin B routed to IRQ 5 Region 0: Memory at dfffc000 (32-bit, non-prefetchable) [size=16K] Capabilities: <access denied> And the only differences I see relate specifically to the memory mapping: myComputer:~> diff card1 card2 3c3 < Control: I/O- Mem+ BusMaster+ SpecCycle- MemWINV- VGASnoop- ParErr- Stepping- SERR- FastB2B- DisINTx- --- > Control: I/O+ Mem+ BusMaster+ SpecCycle- MemWINV- VGASnoop- ParErr- Stepping- SERR- FastB2B- DisINTx- 7,11c7,11 < Region 0: Memory at d4000000 (32-bit, non-prefetchable) [size=32M] < Region 1: Memory at b0000000 (64-bit, prefetchable) [size=128M] < Region 3: Memory at bc000000 (64-bit, prefetchable) [size=64M] < Region 5: I/O ports at df00 [disabled] [size=128] < [virtual] Expansion ROM at b8000000 [disabled] [size=512K] --- > Region 0: Memory at dc000000 (32-bit, non-prefetchable) [size=32M] > Region 1: Memory at c0000000 (64-bit, prefetchable) [size=128M] > Region 3: Memory at cc000000 (64-bit, prefetchable) [size=64M] > Region 5: I/O ports at cf00 [size=128] > [virtual] Expansion ROM at c8000000 [disabled] [size=512K] 18c18 < Control: I/O- Mem- BusMaster- SpecCycle- MemWINV- VGASnoop- ParErr- Stepping- SERR- FastB2B- DisINTx- --- > Control: I/O- Mem+ BusMaster+ SpecCycle- MemWINV- VGASnoop- ParErr- Stepping- SERR- FastB2B- DisINTx- 19a20 > Latency: 0, Cache Line Size: 64 bytes 21c22 < Region 0: [virtual] Memory at d7ffc000 (32-bit, non-prefetchable) [disabled] [size=16K] --- > Region 0: Memory at dfffc000 (32-bit, non-prefetchable) [size=16K]

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  • Slow wireless about 1/3 bandwidth of wired from cable modem

    - by Rhino
    HP DV6000 Wireless G Broadcom Netgear WNDR3400 router properly configured. Windows laptops using wireless G and N are considerably faster than mine. 12.04 LTS, all restricted drivers and all up to date. 50Mbps wired and 9-21 Mbps wireless on Ubuntu. 00:14.0 Bridge [0680]: NVIDIA Corporation MCP51 Ethernet Controller [10de:0269] (rev a3) Subsystem: Hewlett-Packard Company Presario V6133CL [103c:30b7] Kernel driver in use: forcedeth 03:00.0 Network controller [0280]: Broadcom Corporation BCM4311 802.11a/b/g [14e4:4312] (rev 02) Subsystem: Hewlett-Packard Company Broadcom 802.11a/b/g WLAN [103c:1370] Kernel driver in use: wl

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