The adder at the heart of Intel's 8087 floating-point chip
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Re: The adder at the heart of Intel's 8087 floating-point chip
#2Re: The adder at the heart of Intel's 8087 floating-point chip
#3Author here for your 8087 questions. I find adders and ALUs interesting because they are key to the performance of a system and every system implements them differently.
Re: The adder at the heart of Intel's 8087 floating-point chip
#4Re: The adder at the heart of Intel's 8087 floating-point chip
#5Author here for your 8087 questions. I find adders and ALUs interesting because they are key to the performance of a system and every system implements them differently.
Re: The adder at the heart of Intel's 8087 floating-point chip
#6Thanks for the great article.
Re: The adder at the heart of Intel's 8087 floating-point chip
#7Author here for your 8087 questions. I find adders and ALUs interesting because they are key to the performance of a system and every system implements them differently.
How does the clocking work exactly? The circuit is fed A and B and up down up down clock and then the output appears? How does the consumer (circuit) know when to read the result? Is there a "result is ready" flag? How long does the result stay stable? One full clock cycle? So many questions...
Re: The adder at the heart of Intel's 8087 floating-point chip
#8Re: The adder at the heart of Intel's 8087 floating-point chip
#9/* It's a bummer that there is addition but no vipition. */
Turns out what he needed to do was saw up some tree trunks to make rough platforms for them, and they bred like crazy.
Adders can multiply really efficiently with log tables.