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Thunderbolt, which consisted of the remains from all the bottles on the bar, some ice, and a little champagne, and that s it, Cork said If you have two of them, you re on the floor! 31 Around this time, Walgreen bought a cruising boat, the Dixonia, on which he had installed a secret bar one designed to flip over, out of sight, if authorities happened to board On the boat, Walgreen also had what looked to be a large, brass handbell; but instead of a hollow center for the clapper to do its work, the bottom was sealed to store a couple fifths of whiskey The wooden handle screwed off to allow filling or emptying the container as needed Walgreen s personal life, which was otherwise above reproach, is one thing His professional life was another True, certain unethical customers (in concert with unethical doctors) might have slipped a Walgreens pharmacist an occasional prescription for medicinal whiskey ; but there is no indication such behavior was countenanced by the company, which kept its sterling reputation throughout the era When a devil s brew of dubious practices was washing over the city, there was never a whiff of institutional impropriety surrounding Walgreens, in this or any era It also simply wouldn t make business sense for Walgreens to become involved in the common side business of phony pharmacies At the start of Prohibition, Walgreens was already one of the biggest chains in Chicago; and by the end of it, Walgreens had become the biggest chain in the country The growth of Walgreens was partly due to its uncompromising approach to its pharmacy, the most professional around in n era rife with quackery Risking a bust just didn t bear cost-benefit analysis More important, Walgreen s demand for discipline among his troops was legendary It seems highly unlikely for a CEO famous for stressing honesty above all in his troops to want to get involved in running whiskey on the side Further, as we ll see, it wouldn t make sense for Walgreens to put so much effort into attracting customers through its marketing, its products, and its soda fountains to earn honest profits if it intended to use the store as a front for rum running Walgreen struck a blow for morality when he changed the design of his.

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Using Barcode generation for .NET framework Control to generate, create barcode image in S .NET applications.mnemonics unique to itself I find them ugly, nonintuitive, and hard to read This is the AT&T syntax, so called because it was created by AT&T as a portable assembly notation to make Unix easier o port from one underlying CPU to another It's ugly because it was designed to be generic, and it can be recast for any reasonable CPU you could come up with (Don't forget that Unix significantly predates the x86, and gas's predecessor is older than the x86) If it were this simple, I wouldn't mention gas at all, since you don't need to use it to write Linux code in NASM However, one of the major ways you'll end up learning many of the standard C library calls is by using them in short C programs and then inspecting the assembly output gcc generates (I have more to say about this later on) What gcc generates first when it compiles a C program is a file (with a s extension) of assembly language source code using the AT&T syntax and mnemonics It may not be necessary to learn the AT&T syntax thoroughly enough to write it, but it will be very helpful if you can pick it up well enough to read it I'll show you an example later on, and when I do I'll summarize the important differences between AT&T and the NASM syntax and mnemonics, which are more properly called the Intel syntax and mnemonics.Related: Creating Codabar .NET , ITF-14 Creating .NET , .NET Interleaved 2 of 5 Generator

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I've alluded a time or two in this book to the fact that there is more than one set of mnemonics for the x86 instructions set There is only one set of machine instructions, but the machine instructions are pure binary bit patterns that were never intended for human consumption A mnemonic is just that: a way for human beings to remember what the binary bit pattern 1000100111000011 means to the CPU Instead of writing 16 ones and zeros in a row (or even the slightly more graspable hexadecimal equivalent $89 $C3), we say MOV BX,AX Keep in mind that mnemonics are just that memory joggers for humans and are creatures unknown to the CPU itself Assemblers translate mnemonics to machine instructions Although we can agree among ourselves that MOV BX,AX will translate to 1000100111000011, there's nothing magical about the string MOV BX,AX We could as well have agreed on "COPY AX TO BX" or "STICK GPREGA INTO GPREGB" We use MOV BX,AX because that was what Intel suggested we do, and since it designed and manufactures the CPU chips, we feel that it has no small privilege in such matters There is another set of mnemonics for the x86 processors, and, as luck would have it, those mnemonics predominate in the Linux world They didn't come about out of cussedness or contrariness, but because the people who originally created Unix also wished to create a family of nearly portable assemblers to help implement Unix on new platforms I say "nearly portable" because a truly portable assembler is impossible (Supposedly, the C language originated as an attempt to create a genuinely portable assembler notation which, of course, is the definition of a higher-level language) What they did do was create a set of global conventions that all assemblers within the Unix family would adhere to, and thus make creating a PU-specific assembler faster and less trouble These conventions actually predate the creation of the x86 processors themselves When gcc compiles a C source code file to machine code, what it really does is translate the C source code to assembly language source code, using what most people call the AT&T mnemonics (Unix was created at AT&T in the sixties, and the assembler conventions for Unix assemblers were defined there as well) Look back to Figure 121 The gcc compiler takes as input a c source code file, and outputs a s assembly source file, which is then handed to the GNU assembler gas for assembly This is the way the GNU tools work on all platforms In a sense, assembly language is an intermediate language used mostly for the C compiler's benefit In most cases, programmers never see it and don't have to fool with it In most cases However, if you're going to deal with the GNU debugger gdb at a machine-code level (rather than at the C source code level), the AT&T mnemonics will be in your face at every single step of the way, heh-heh In my view the usefulness of gdb is greatly reduced by its strict dependence on the AT&T instruction mnemonics I keep looking for somebody to create a DEBUG-style debugger for Linux that uses Intel's own mnemonics, but so far I've come up empty Therefore, it would make sense to become at least passingly familiar with the AT&T mnemonic set There are some general rules that, once digested, make it much easier Here's the list in short form: AT&T mnemonics and register names are invariably in lowercase This is in keeping with the Unix convention of case sensitivity, and at complete variance with the Intel convention of uppercase for assembly language source I've mixed uppercase and lowercase in the text and examples to get you used to seeing assembly source both ways, but you have to remember that while Intel (and hence NASM) suggests uppercase but will accept lowercase, AT&T requires lowercase Register names are always preceded by the percent symbol, % That is, what Intel would write as AX or EBX, AT&T would write as %ax and %ebx This helps the assembler recognize register names Every AT&T machine instruction mnemonic that has operands has a single-character suffix indicating how large its operands are The suffix letters are b, w, and l, indicating byte (8 bits), word (16 bits), or long (32 bits) What Intel would write as MOV BX,AX, AT&T would write as movw %ax,%bx (The changed order of %ax and %bx is not an error See the next rule!) In the AT&T syntax, source and destination operands are placed in the opposite order from Intel syntax That is, what Intel would write as MOV BX,AX, AT&T would write as movw %ax,%bx In other words, in AT&T syntax, the source operand comes first, followed by the destination This actually makes a little more sense than Intel conventions, but confusion and errors are inevitable.

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