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TransferFunction

Enum TransferFunction 

Source
pub enum TransferFunction {
Show 15 variants ACESCCT, ARRIlog3, ARRIlog4, AppleLog, AppleLog2, CLog3, DaVinciIntermediate, FLog2, Gamma24, HLG, Linear, PQ, Rec709, SLog3, VLog,
}

Variants§

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ACESCCT

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ARRIlog3

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ARRIlog4

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AppleLog

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AppleLog2

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CLog3

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DaVinciIntermediate

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FLog2

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Gamma24

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HLG

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Linear

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PQ

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Rec709

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SLog3

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VLog

Implementations§

Source§

impl TransferFunction

Source

pub fn name(&self) -> &'static str

Examples found in repository?
examples/gpu_validate.rs (line 137)
6fn main() {
7    // Step 1: Initialize preview GPU context
8    println!("== GPU Preview Pipeline Validation ==");
9    println!();
10
11    println!("[1/4] Initializing wgpu device...");
12    let context = match mcraw_tui::preview::pipeline::device::PreviewGpuContext::new() {
13        Ok(ctx) => {
14            println!("  ✓ Device created");
15            println!("  ✓ Queue acquired");
16            ctx
17        }
18        Err(e) => {
19            println!("  ✗ FAILED: {}", e);
20            std::process::exit(1);
21        }
22    };
23
24    println!();
25    println!("[2/4] Creating compute pipeline + compiling WGSL shader...");
26    let ctx_arc = std::sync::Arc::new(context);
27    let mut pipeline = match mcraw_tui::preview::pipeline::GpuPreviewPipeline::new().init(ctx_arc.clone()) {
28        Ok(p) => {
29            println!("  ✓ SHADER COMPILED — all 15 OETFs loaded");
30            println!("  ✓ Pipeline cache pre-warmed with default combo");
31            p
32        }
33        Err(e) => {
34            println!("  ✗ FAILED: {}", e);
35            std::process::exit(1);
36        }
37    };
38
39    println!();
40    println!("[3/4] Processing synthetic 256x128 Bayer frame...");
41
42    // Generate a synthetic RGGB Bayer frame: gradient + checkerboard
43    const W: u32 = 256;
44    const H: u32 = 128;
45    let mut bayer: Vec<u16> = Vec::with_capacity((W * H) as usize);
46    for y in 0..H {
47        for x in 0..W {
48            let phase = (y & 1) * 2 + (x & 1); // 0=RGGB
49            let val = match phase {
50                0 | 3 => { // R or B — saturated
51                    let r = ((x as f32 / W as f32) * 0.8 + 0.1) * 65535.0;
52                    r as u16
53                }
54                1 | 2 => { // G
55                    let g = 0.5 * 65535.0 + ((y as f32 / H as f32) * 0.3 - 0.15) * 65535.0;
56                    g as u16
57                }
58                _ => unreachable!(),
59            };
60            bayer.push(val);
61        }
62    }
63    println!("  ✓ Synthetic Bayer frame: {}x{}", W, H);
64
65    // Build PreviewParams for Rec709 + sRGB display
66    use mcraw_tui::preview::pipeline::params::PreviewParams;
67    let params = PreviewParams {
68        width: W,
69        height: H,
70        bayer_width: W,
71        bayer_height: H,
72        black_level: 64.0,
73        white_level: 4095.0,
74        exposure: 1.0,
75        wb_r: 1.0, wb_g: 1.0, wb_b: 1.0,
76        contrast: 1.0,
77        saturation: 1.0,
78        shadows: 0.0,
79        highlights: 0.0,
80        _align0: 0.0, _align1: 0.0,
81        ccm_row0: [1.0, 0.0, 0.0, 0.0],
82        ccm_row1: [0.0, 1.0, 0.0, 0.0],
83        ccm_row2: [0.0, 0.0, 1.0, 0.0],
84        color_space: 0,
85        transfer: 1, // sRGB
86        adjust_enabled: 0,
87        bayer_phase: 0,
88        compute_histogram: 0,
89        _pad0: 0, _pad1: 0, _pad2: 0, _pad3: 0, _pad4: 0, _pad5: 0, _pad6: 0,
90    };
91
92    let start = std::time::Instant::now();
93    match pipeline.process_and_readback(&bayer, &params) {
94        Ok((rgba, out_w, out_h)) => {
95            let elapsed = start.elapsed();
96            println!("  ✓ GPU process + readback: {}x{} → {} bytes in {:?} ({:.0} fps)",
97                out_w, out_h, rgba.len(), elapsed, 1.0 / elapsed.as_secs_f64());
98            // Validate output
99            let expected_pixels = (out_w * out_h) as usize;
100            if rgba.len() == expected_pixels * 4 {
101                println!("  ✓ Output buffer size correct: {} RGBA pixels", expected_pixels);
102            } else {
103                println!("  ✗ Size mismatch: got {} bytes, expected {}", rgba.len(), expected_pixels * 4);
104                std::process::exit(1);
105            }
106            // Check a few pixels aren't all zero
107            let non_zero = rgba.iter().filter(|&&b| b != 0).count();
108            if non_zero > 0 {
109                println!("  ✓ Output has {} non-zero bytes (image content verified)", non_zero);
110            } else {
111                println!("  ✗ All output bytes are zero — pipeline produced black frame");
112                std::process::exit(1);
113            }
114        }
115        Err(e) => {
116            println!("  ✗ FAILED: {}", e);
117            std::process::exit(1);
118        }
119    }
120
121    println!();
122    println!("[4/4] Testing all 15 transfer function combinations...");
123
124    use mcraw_tui::preview::pipeline::params::transfer_to_u32;
125    use mcraw_tui::color::TransferFunction;
126
127    let mut passed = 0u32;
128    let mut failed = 0u32;
129    for tf in TransferFunction::all() {
130        let mut params = params.clone();
131        params.transfer = transfer_to_u32(tf);
132        let start = std::time::Instant::now();
133        match pipeline.process_and_readback(&bayer, &params) {
134            Ok((_, _, _)) => {
135                let elapsed = start.elapsed();
136                if elapsed.as_millis() < 5000 {
137                    println!("  ✓ {:<20} {:>6?}", tf.name(), elapsed);
138                    passed += 1;
139                } else {
140                    println!("  ✗ {:<20} timed out", tf.name());
141                    failed += 1;
142                }
143            }
144            Err(e) => {
145                println!("  ✗ {:<20} {}", tf.name(), e);
146                failed += 1;
147            }
148        }
149    }
150
151    println!();
152    println!("== RESULTS ==");
153    println!("  ✓ GPU device init:     PASS");
154    println!("  ✓ WGSL compilation:    PASS");
155    println!("  ✓ Synthetic frame:     PASS");
156    println!("  ✓ OETF variants:       {}/15 passed, {}/15 failed", passed, failed);
157
158    if failed == 0 {
159        println!();
160        println!("  🎉 All checks passed — pipeline is fully functional on this GPU!");
161        0
162    } else {
163        println!();
164        println!("  ⚠ {} OETF variants failed — see above for details", failed);
165        1
166    };
167}
Source

pub fn process(&self, pixels: &mut [f32])

Apply the OETF (linear → log) for the selected transfer function.

Source-of-truth references for each branch:

VariantSpec / document
Rec709ITU-R BT.709-6 OETF
SLog3Sony “S-Log3 Technical Specification” (Sept 2014) — canonical form: code = (420 + 261.5×log₁₀((x+0.01)/0.19)) / 1023, knee at 0.01125, black code 95, 18% grey code 420
VLogPanasonic “V-Log/V-Gamut Reference Manual” (2014) — 5.6x+0.125 / 0.241514*log10(x+0.00873)+0.598206, knee at 0.01
ARRIlog3ARRI “LogC-3 Logarithmic Color Space” spec (2020), EI 800 variant
ARRIlog4ARRI “LogC4 Encoding Function” (Cooper & Brendel, 2022; ALEV4 / Alexa 35), EI-independent
CLog3Canon Cinema EOS C-Log3 characteristics (2016) — three-segment with negative-side graft
FLog2Fujifilm “F-Log2 Data Sheet” (2021) — Fujifilm-internal anchor at 0.000889
AppleLog/AppleLog2Apple “Apple Log Profile White Paper” (Sept 2023) — R0=-0.05641088, C=47.28711236
ACESCCTAMPAS ACEScc specification (TB-2022-002), knee at 2^-7 = 0.0078125, log slope 17.52
PQITU-R BT.2100-2 ST.2084 PQ (2022) — m1=0.1593017578125, m2=78.84375, c1=0.8359375, c2=18.8515625, c3=18.6875
HLGITU-R BT.2100-2 HLG OETF (2022) — knee at 1/12, a=0.17883277, b=0.28466892, c=0.55991073
DaVinciIntermediateBlackmagic “DaVinci YRGB Intermediate” — knee at 0.00262409, log slope 0.07329248
Gamma24Display gamma 1/2.4 (Rec.1886 EOTF approximation)
Linearidentity
Source

pub fn all() -> &'static [TransferFunction]

Examples found in repository?
examples/gpu_validate.rs (line 129)
6fn main() {
7    // Step 1: Initialize preview GPU context
8    println!("== GPU Preview Pipeline Validation ==");
9    println!();
10
11    println!("[1/4] Initializing wgpu device...");
12    let context = match mcraw_tui::preview::pipeline::device::PreviewGpuContext::new() {
13        Ok(ctx) => {
14            println!("  ✓ Device created");
15            println!("  ✓ Queue acquired");
16            ctx
17        }
18        Err(e) => {
19            println!("  ✗ FAILED: {}", e);
20            std::process::exit(1);
21        }
22    };
23
24    println!();
25    println!("[2/4] Creating compute pipeline + compiling WGSL shader...");
26    let ctx_arc = std::sync::Arc::new(context);
27    let mut pipeline = match mcraw_tui::preview::pipeline::GpuPreviewPipeline::new().init(ctx_arc.clone()) {
28        Ok(p) => {
29            println!("  ✓ SHADER COMPILED — all 15 OETFs loaded");
30            println!("  ✓ Pipeline cache pre-warmed with default combo");
31            p
32        }
33        Err(e) => {
34            println!("  ✗ FAILED: {}", e);
35            std::process::exit(1);
36        }
37    };
38
39    println!();
40    println!("[3/4] Processing synthetic 256x128 Bayer frame...");
41
42    // Generate a synthetic RGGB Bayer frame: gradient + checkerboard
43    const W: u32 = 256;
44    const H: u32 = 128;
45    let mut bayer: Vec<u16> = Vec::with_capacity((W * H) as usize);
46    for y in 0..H {
47        for x in 0..W {
48            let phase = (y & 1) * 2 + (x & 1); // 0=RGGB
49            let val = match phase {
50                0 | 3 => { // R or B — saturated
51                    let r = ((x as f32 / W as f32) * 0.8 + 0.1) * 65535.0;
52                    r as u16
53                }
54                1 | 2 => { // G
55                    let g = 0.5 * 65535.0 + ((y as f32 / H as f32) * 0.3 - 0.15) * 65535.0;
56                    g as u16
57                }
58                _ => unreachable!(),
59            };
60            bayer.push(val);
61        }
62    }
63    println!("  ✓ Synthetic Bayer frame: {}x{}", W, H);
64
65    // Build PreviewParams for Rec709 + sRGB display
66    use mcraw_tui::preview::pipeline::params::PreviewParams;
67    let params = PreviewParams {
68        width: W,
69        height: H,
70        bayer_width: W,
71        bayer_height: H,
72        black_level: 64.0,
73        white_level: 4095.0,
74        exposure: 1.0,
75        wb_r: 1.0, wb_g: 1.0, wb_b: 1.0,
76        contrast: 1.0,
77        saturation: 1.0,
78        shadows: 0.0,
79        highlights: 0.0,
80        _align0: 0.0, _align1: 0.0,
81        ccm_row0: [1.0, 0.0, 0.0, 0.0],
82        ccm_row1: [0.0, 1.0, 0.0, 0.0],
83        ccm_row2: [0.0, 0.0, 1.0, 0.0],
84        color_space: 0,
85        transfer: 1, // sRGB
86        adjust_enabled: 0,
87        bayer_phase: 0,
88        compute_histogram: 0,
89        _pad0: 0, _pad1: 0, _pad2: 0, _pad3: 0, _pad4: 0, _pad5: 0, _pad6: 0,
90    };
91
92    let start = std::time::Instant::now();
93    match pipeline.process_and_readback(&bayer, &params) {
94        Ok((rgba, out_w, out_h)) => {
95            let elapsed = start.elapsed();
96            println!("  ✓ GPU process + readback: {}x{} → {} bytes in {:?} ({:.0} fps)",
97                out_w, out_h, rgba.len(), elapsed, 1.0 / elapsed.as_secs_f64());
98            // Validate output
99            let expected_pixels = (out_w * out_h) as usize;
100            if rgba.len() == expected_pixels * 4 {
101                println!("  ✓ Output buffer size correct: {} RGBA pixels", expected_pixels);
102            } else {
103                println!("  ✗ Size mismatch: got {} bytes, expected {}", rgba.len(), expected_pixels * 4);
104                std::process::exit(1);
105            }
106            // Check a few pixels aren't all zero
107            let non_zero = rgba.iter().filter(|&&b| b != 0).count();
108            if non_zero > 0 {
109                println!("  ✓ Output has {} non-zero bytes (image content verified)", non_zero);
110            } else {
111                println!("  ✗ All output bytes are zero — pipeline produced black frame");
112                std::process::exit(1);
113            }
114        }
115        Err(e) => {
116            println!("  ✗ FAILED: {}", e);
117            std::process::exit(1);
118        }
119    }
120
121    println!();
122    println!("[4/4] Testing all 15 transfer function combinations...");
123
124    use mcraw_tui::preview::pipeline::params::transfer_to_u32;
125    use mcraw_tui::color::TransferFunction;
126
127    let mut passed = 0u32;
128    let mut failed = 0u32;
129    for tf in TransferFunction::all() {
130        let mut params = params.clone();
131        params.transfer = transfer_to_u32(tf);
132        let start = std::time::Instant::now();
133        match pipeline.process_and_readback(&bayer, &params) {
134            Ok((_, _, _)) => {
135                let elapsed = start.elapsed();
136                if elapsed.as_millis() < 5000 {
137                    println!("  ✓ {:<20} {:>6?}", tf.name(), elapsed);
138                    passed += 1;
139                } else {
140                    println!("  ✗ {:<20} timed out", tf.name());
141                    failed += 1;
142                }
143            }
144            Err(e) => {
145                println!("  ✗ {:<20} {}", tf.name(), e);
146                failed += 1;
147            }
148        }
149    }
150
151    println!();
152    println!("== RESULTS ==");
153    println!("  ✓ GPU device init:     PASS");
154    println!("  ✓ WGSL compilation:    PASS");
155    println!("  ✓ Synthetic frame:     PASS");
156    println!("  ✓ OETF variants:       {}/15 passed, {}/15 failed", passed, failed);
157
158    if failed == 0 {
159        println!();
160        println!("  🎉 All checks passed — pipeline is fully functional on this GPU!");
161        0
162    } else {
163        println!();
164        println!("  ⚠ {} OETF variants failed — see above for details", failed);
165        1
166    };
167}
Source

pub fn next(self) -> Self

Source

pub fn prev(self) -> Self

Source

pub fn is_log_bypass(&self) -> bool

Source

pub fn requires_10bit(&self) -> bool

Trait Implementations§

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impl Clone for TransferFunction

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fn clone(&self) -> TransferFunction

Returns a duplicate of the value. Read more
1.0.0 (const: unstable) · Source§

fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
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impl Copy for TransferFunction

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impl Debug for TransferFunction

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fn fmt(&self, f: &mut Formatter<'_>) -> Result

Formats the value using the given formatter. Read more
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impl Eq for TransferFunction

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impl From<TransferFunction> for Transfer

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fn from(tf: TransferFunction) -> Self

Converts to this type from the input type.
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impl PartialEq for TransferFunction

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fn eq(&self, other: &TransferFunction) -> bool

Tests for self and other values to be equal, and is used by ==.
1.0.0 (const: unstable) · Source§

fn ne(&self, other: &Rhs) -> bool

Tests for !=. The default implementation is almost always sufficient, and should not be overridden without very good reason.
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impl StructuralPartialEq for TransferFunction

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impl<S, D, Swp, Dwp, T> AdaptInto<D, Swp, Dwp, T> for S
where T: Real + Zero + Arithmetics + Clone, Swp: WhitePoint<T>, Dwp: WhitePoint<T>, D: AdaptFrom<S, Swp, Dwp, T>,

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fn adapt_into_using<M>(self, method: M) -> D
where M: TransformMatrix<T>,

Convert the source color to the destination color using the specified method.
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fn adapt_into(self) -> D

Convert the source color to the destination color using the bradford method by default.
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impl<T> Any for T
where T: 'static + ?Sized,

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fn type_id(&self) -> TypeId

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fn arrays_from(colors: C) -> T

Cast a collection of colors into a collection of arrays.
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impl<T, C> ArraysInto<C> for T
where C: FromArrays<T>,

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fn arrays_into(self) -> C

Cast this collection of arrays into a collection of colors.
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🔬This is a nightly-only experimental API. (clone_to_uninit)
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impl<T, C> ComponentsFrom<C> for T
where C: IntoComponents<T>,

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fn components_from(colors: C) -> T

Cast a collection of colors into a collection of color components.
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fn conv<T>(self) -> T
where Self: Into<T>,

Converts self into T using Into<T>. Read more
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Compare self to key and return true if they are equal.
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where Self: Binary,

Causes self to use its Binary implementation when Debug-formatted.
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where Self: Display,

Causes self to use its Display implementation when Debug-formatted.
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where Self: LowerExp,

Causes self to use its LowerExp implementation when Debug-formatted.
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where Self: LowerHex,

Causes self to use its LowerHex implementation when Debug-formatted.
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where Self: Octal,

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where Self: UpperHex,

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where &'a Self: for<'a> IntoIterator,

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Returns the argument unchanged.

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Performs a conversion from angle.
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Borrows self, then passes self.borrow() into the pipe function. Read more
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fn pipe_borrow_mut<'a, B, R>( &'a mut self, func: impl FnOnce(&'a mut B) -> R, ) -> R
where Self: BorrowMut<B>, B: 'a + ?Sized, R: 'a,

Mutably borrows self, then passes self.borrow_mut() into the pipe function. Read more
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fn pipe_as_ref<'a, U, R>(&'a self, func: impl FnOnce(&'a U) -> R) -> R
where Self: AsRef<U>, U: 'a + ?Sized, R: 'a,

Borrows self, then passes self.as_ref() into the pipe function.
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fn pipe_as_mut<'a, U, R>(&'a mut self, func: impl FnOnce(&'a mut U) -> R) -> R
where Self: AsMut<U>, U: 'a + ?Sized, R: 'a,

Mutably borrows self, then passes self.as_mut() into the pipe function.
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fn pipe_deref<'a, T, R>(&'a self, func: impl FnOnce(&'a T) -> R) -> R
where Self: Deref<Target = T>, T: 'a + ?Sized, R: 'a,

Borrows self, then passes self.deref() into the pipe function.
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fn pipe_deref_mut<'a, T, R>( &'a mut self, func: impl FnOnce(&'a mut T) -> R, ) -> R
where Self: DerefMut<Target = T> + Deref, T: 'a + ?Sized, R: 'a,

Mutably borrows self, then passes self.deref_mut() into the pipe function.
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impl<T> Pointable for T

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const ALIGN: usize

The alignment of pointer.
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type Init = T

The type for initializers.
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unsafe fn init(init: <T as Pointable>::Init) -> usize

Initializes a with the given initializer. Read more
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unsafe fn deref<'a>(ptr: usize) -> &'a T

Dereferences the given pointer. Read more
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unsafe fn deref_mut<'a>(ptr: usize) -> &'a mut T

Mutably dereferences the given pointer. Read more
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unsafe fn drop(ptr: usize)

Drops the object pointed to by the given pointer. Read more
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impl<T> Tap for T

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fn tap(self, func: impl FnOnce(&Self)) -> Self

Immutable access to a value. Read more
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fn tap_mut(self, func: impl FnOnce(&mut Self)) -> Self

Mutable access to a value. Read more
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fn tap_borrow<B>(self, func: impl FnOnce(&B)) -> Self
where Self: Borrow<B>, B: ?Sized,

Immutable access to the Borrow<B> of a value. Read more
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fn tap_borrow_mut<B>(self, func: impl FnOnce(&mut B)) -> Self
where Self: BorrowMut<B>, B: ?Sized,

Mutable access to the BorrowMut<B> of a value. Read more
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fn tap_ref<R>(self, func: impl FnOnce(&R)) -> Self
where Self: AsRef<R>, R: ?Sized,

Immutable access to the AsRef<R> view of a value. Read more
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fn tap_ref_mut<R>(self, func: impl FnOnce(&mut R)) -> Self
where Self: AsMut<R>, R: ?Sized,

Mutable access to the AsMut<R> view of a value. Read more
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fn tap_deref<T>(self, func: impl FnOnce(&T)) -> Self
where Self: Deref<Target = T>, T: ?Sized,

Immutable access to the Deref::Target of a value. Read more
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fn tap_deref_mut<T>(self, func: impl FnOnce(&mut T)) -> Self
where Self: DerefMut<Target = T> + Deref, T: ?Sized,

Mutable access to the Deref::Target of a value. Read more
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fn tap_dbg(self, func: impl FnOnce(&Self)) -> Self

Calls .tap() only in debug builds, and is erased in release builds.
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fn tap_mut_dbg(self, func: impl FnOnce(&mut Self)) -> Self

Calls .tap_mut() only in debug builds, and is erased in release builds.
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fn tap_borrow_dbg<B>(self, func: impl FnOnce(&B)) -> Self
where Self: Borrow<B>, B: ?Sized,

Calls .tap_borrow() only in debug builds, and is erased in release builds.
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fn tap_borrow_mut_dbg<B>(self, func: impl FnOnce(&mut B)) -> Self
where Self: BorrowMut<B>, B: ?Sized,

Calls .tap_borrow_mut() only in debug builds, and is erased in release builds.
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fn tap_ref_dbg<R>(self, func: impl FnOnce(&R)) -> Self
where Self: AsRef<R>, R: ?Sized,

Calls .tap_ref() only in debug builds, and is erased in release builds.
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fn tap_ref_mut_dbg<R>(self, func: impl FnOnce(&mut R)) -> Self
where Self: AsMut<R>, R: ?Sized,

Calls .tap_ref_mut() only in debug builds, and is erased in release builds.
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fn tap_deref_dbg<T>(self, func: impl FnOnce(&T)) -> Self
where Self: Deref<Target = T>, T: ?Sized,

Calls .tap_deref() only in debug builds, and is erased in release builds.
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fn tap_deref_mut_dbg<T>(self, func: impl FnOnce(&mut T)) -> Self
where Self: DerefMut<Target = T> + Deref, T: ?Sized,

Calls .tap_deref_mut() only in debug builds, and is erased in release builds.
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impl<T> ToOwned for T
where T: Clone,

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type Owned = T

The resulting type after obtaining ownership.
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fn to_owned(&self) -> T

Creates owned data from borrowed data, usually by cloning. Read more
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fn clone_into(&self, target: &mut T)

Uses borrowed data to replace owned data, usually by cloning. Read more
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impl<T, C> TryComponentsInto<C> for T
where C: TryFromComponents<T>,

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type Error = <C as TryFromComponents<T>>::Error

The error for when try_into_colors fails to cast.
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fn try_components_into(self) -> Result<C, <T as TryComponentsInto<C>>::Error>

Try to cast this collection of color components into a collection of colors. Read more
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impl<T> TryConv for T

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fn try_conv<T>(self) -> Result<T, Self::Error>
where Self: TryInto<T>,

Attempts to convert self into T using TryInto<T>. Read more
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impl<T, U> TryFrom<U> for T
where U: Into<T>,

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type Error = Infallible

The type returned in the event of a conversion error.
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fn try_from(value: U) -> Result<T, <T as TryFrom<U>>::Error>

Performs the conversion.
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impl<T, U> TryInto<U> for T
where U: TryFrom<T>,

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type Error = <U as TryFrom<T>>::Error

The type returned in the event of a conversion error.
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fn try_into(self) -> Result<U, <U as TryFrom<T>>::Error>

Performs the conversion.
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impl<T, U> TryIntoColor<U> for T
where U: TryFromColor<T>,

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fn try_into_color(self) -> Result<U, OutOfBounds<U>>

Convert into T, returning ok if the color is inside of its defined range, otherwise an OutOfBounds error is returned which contains the unclamped color. Read more
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impl<C, U> UintsFrom<C> for U
where C: IntoUints<U>,

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fn uints_from(colors: C) -> U

Cast a collection of colors into a collection of unsigned integers.
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impl<C, U> UintsInto<C> for U
where C: FromUints<U>,

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fn uints_into(self) -> C

Cast this collection of unsigned integers into a collection of colors.
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impl<T> Upcast<T> for T

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fn upcast(&self) -> Option<&T>

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impl<T> WasmNotSend for T
where T: Send,

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impl<T> WasmNotSendSync for T

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impl<T> WasmNotSync for T
where T: Sync,

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impl<T> WithSubscriber for T

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fn with_subscriber<S>(self, subscriber: S) -> WithDispatch<Self>
where S: Into<Dispatch>,

Attaches the provided Subscriber to this type, returning a WithDispatch wrapper. Read more
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fn with_current_subscriber(self) -> WithDispatch<Self>

Attaches the current default Subscriber to this type, returning a WithDispatch wrapper. Read more