authorgravatar for emekankurumeh@outlook.comemekoi <emekankurumeh@outlook.com> 2019-06-28 16:01:41-05:00
committergravatar for andrew@ziglang.orgAndrew Kelley <andrew@ziglang.org> 2019-06-29 13:21:27-04:00
log8156a61de898c1ebcf4b70da21618452507591cd
treef005525484352965e18e660f5bb74225647d0c8a
parent7a2b0cc9c44c9ad426e6f0b1a65b746b7535e35d

fix syntax highlighting


1 files changed, 13 insertions(+), 13 deletions(-)

doc/langref.html.in+13-13
......@@ -7354,91 +7354,91 @@ test "@setRuntimeSafety" {
73547354 <pre>{#syntax#}@sqrt(comptime T: type, value: T) T{#endsyntax#}</pre>
73557355 <p>
73567356 Performs the square root of a floating point number. Uses a dedicated hardware instruction
7357 when available. Supports f16, f32, f64, and f128, as well as vectors.
7357 when available. Supports {#syntax#}f16{#endsyntax#}, {#syntax#}f32{#endsyntax#}, {#syntax#}f64{#endsyntax#}, and {#syntax#}f128{#endsyntax#}, as well as vectors.
73587358 </p>
73597359 {#header_close#}
73607360 {#header_open|@sin#}
73617361 <pre>{#syntax#}@sin(comptime T: type, value: T) T{#endsyntax#}</pre>
73627362 <p>
73637363 Sine trigometric function on a floating point number. Uses a dedicated hardware instruction
7364 when available. Currently supports f32 and f64.
7364 when available. Currently supports {#syntax#}f32{#endsyntax#} and {#syntax#}f64{#endsyntax#}.
73657365 </p>
73667366 {#header_close#}
73677367 {#header_open|@cos#}
73687368 <pre>{#syntax#}@cos(comptime T: type, value: T) T{#endsyntax#}</pre>
73697369 <p>
73707370 Cosine trigometric function on a floating point number. Uses a dedicated hardware instruction
7371 when available. Currently supports f32 and f64.
7371 when available. Currently supports {#syntax#}f32{#endsyntax#} and {#syntax#}f64{#endsyntax#}.
73727372 </p>
73737373 {#header_close#}
73747374 {#header_open|@exp#}
73757375 <pre>{#syntax#}@exp(comptime T: type, value: T) T{#endsyntax#}</pre>
73767376 <p>
73777377 Base-e exponential function on a floating point number. Uses a dedicated hardware instruction
7378 when available. Currently supports f32 and f64.
7378 when available. Currently supports {#syntax#}f32{#endsyntax#} and {#syntax#}f64{#endsyntax#}.
73797379 </p>
73807380 {#header_close#}
73817381 {#header_open|@exp2#}
73827382 <pre>{#syntax#}@exp2(comptime T: type, value: T) T{#endsyntax#}</pre>
73837383 <p>
73847384 Base-2 exponential function on a floating point number. Uses a dedicated hardware instruction
7385 when available. Currently supports f32 and f64.
7385 when available. Currently supports {#syntax#}f32{#endsyntax#} and {#syntax#}f64{#endsyntax#}.
73867386 </p>
73877387 {#header_close#}
73887388 {#header_open|@ln#}
73897389 <pre>{#syntax#}@ln(comptime T: type, value: T) T{#endsyntax#}</pre>
73907390 <p>
73917391 Returns the natural logarithm of a floating point number. Uses a dedicated hardware instruction
7392 when available. Currently supports f32 and f64.
7392 when available. Currently supports {#syntax#}f32{#endsyntax#} and {#syntax#}f64{#endsyntax#}.
73937393 </p>
73947394 {#header_close#}
73957395 {#header_open|@log2#}
73967396 <pre>{#syntax#}@log2(comptime T: type, value: T) T{#endsyntax#}</pre>
73977397 <p>
73987398 Returns the logarithm to the base 2 of a floating point number. Uses a dedicated hardware instruction
7399 when available. Currently supports f32 and f64.
7399 when available. Currently supports {#syntax#}f32{#endsyntax#} and {#syntax#}f64{#endsyntax#}.
74007400 </p>
74017401 {#header_close#}
74027402 {#header_open|@log10#}
74037403 <pre>{#syntax#}@log10(comptime T: type, value: T) T{#endsyntax#}</pre>
74047404 <p>
74057405 Returns the logarithm to the base 10 of a floating point number. Uses a dedicated hardware instruction
7406 when available. Currently supports f32 and f64.
7406 when available. Currently supports {#syntax#}f32{#endsyntax#} and {#syntax#}f64{#endsyntax#}.
74077407 </p>
74087408 {#header_close#}
74097409 {#header_open|@fabs#}
74107410 <pre>{#syntax#}@fabs(comptime T: type, value: T) T{#endsyntax#}</pre>
74117411 <p>
74127412 Returns the absolute value of a floating point number. Uses a dedicated hardware instruction
7413 when available. Currently supports f32 and f64.
7413 when available. Currently supports {#syntax#}f32{#endsyntax#} and {#syntax#}f64{#endsyntax#}.
74147414 </p>
74157415 {#header_close#}
74167416 {#header_open|@floor#}
74177417 <pre>{#syntax#}@floor(comptime T: type, value: T) T{#endsyntax#}</pre>
74187418 <p>
74197419 Returns the largest integral value not greater than the given floating point number. Uses a dedicated hardware instruction
7420 when available. Currently supports f32 and f64.
7420 when available. Currently supports {#syntax#}f32{#endsyntax#} and {#syntax#}f64{#endsyntax#}.
74217421 </p>
74227422 {#header_close#}
74237423 {#header_open|@ceil#}
74247424 <pre>{#syntax#}@ceil(comptime T: type, value: T) T{#endsyntax#}</pre>
74257425 <p>
74267426 Returns the largest integral value not less than the given floating point number. Uses a dedicated hardware instruction
7427 when available. Currently supports f32 and f64.
7427 when available. Currently supports {#syntax#}f32{#endsyntax#} and {#syntax#}f64{#endsyntax#}.
74287428 </p>
74297429 {#header_close#}
74307430 {#header_open|@trunc#}
74317431 <pre>{#syntax#}@trunc(comptime T: type, value: T) T{#endsyntax#}</pre>
74327432 <p>
74337433 Rounds the given floating point number to an integer, towards zero. Uses a dedicated hardware instruction
7434 when available. Currently supports f32 and f64.
7434 when available. Currently supports {#syntax#}f32{#endsyntax#} and {#syntax#}f64{#endsyntax#}.
74357435 </p>
74367436 {#header_close#}
74377437 {#header_open|@round#}
74387438 <pre>{#syntax#}@round(comptime T: type, value: T) T{#endsyntax#}</pre>
74397439 <p>
74407440 Rounds the given floating point number to an integer, away from zero. Uses a dedicated hardware instruction
7441 when available. Currently supports f32 and f64.
7441 when available. Currently supports {#syntax#}f32{#endsyntax#} and {#syntax#}f64{#endsyntax#}.
74427442 </p>
74437443 {#header_close#}
74447444