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Equation 9 · Part 2 · The Network Is the Computer Again

Symbol n

T(n,p)=α L(p)+β W(n,p)+γ C(n,p),T(n,p) = \alpha\,L(p) + \beta\,W(n,p) + \gamma\,C(n,p),
nn

What this part means

n is an argument of the function-like quantity on the left; its role is set by that function’s stated inputs.

Its job in the formula

n is an argument of the function-like quantity on the left; its role is set by that function’s stated inputs.

The passage around this formula

The classical accounting for a collective operation separates three terms: a per-message latency, a per-byte transfer cost, and a per-byte computation cost for reductions [ 2 ] . Writing α\alpha for latency per message, β\beta for transfer time per byte and γ\gamma for reduction time per byte, the cost of a collective over p participants on n bytes takes the shape T(n,p)=α L(p)+β W(n,p)+γ C(n,p)T(n,p) = \alpha\,L(p) + \beta\,W(n,p) + \gamma\,C(n,p). where L counts message steps, W counts bytes crossing each link and C counts arithmetic. The whole art of collective algorithm design is choosing which of these terms to pay.

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Learn the underlying idea

A variable is a named place for a value. Its letter is a local label: x can mean position in one formula and a data point in another.

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Sources cited in the surrounding passage

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