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| 0 | 1 | /*! |
| 2 | Abstract linear operators. | |
| 3 | */ | |
| 4 | ||
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5 | use crate::direct_product::Pair; |
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6 | use crate::error::DynResult; |
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7 | use crate::instance::Instance; |
| 150 | 8 | pub use crate::mapping::{ClosedSpace, Composition, DifferentiableImpl, Mapping, Space}; |
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9 | use crate::norms::{HasDual, Linfinity, Norm, NormExponent, PairNorm, L1, L2}; |
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10 | use crate::types::*; |
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11 | use numeric_literals::replace_float_literals; |
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12 | use serde::Serialize; |
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13 | use std::marker::PhantomData; |
| 130 | 14 | use std::ops::{Add, AddAssign, Div, DivAssign, Mul, MulAssign, Neg, Sub, SubAssign}; |
| 0 | 15 | |
| 16 | /// Trait for linear operators on `X`. | |
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17 | pub trait Linear<X: Space>: Mapping<X> {} |
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18 | |
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19 | // impl<X: Space, A: Linear<X>> DifferentiableImpl<X> for A { |
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20 | // type Derivative = <Self as Mapping<X>>::Codomain; |
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21 | |
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22 | // /// Compute the differential of `self` at `x`, consuming the input. |
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23 | // fn differential_impl<I: Instance<X>>(&self, x: I) -> Self::Derivative { |
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24 | // self.apply(x) |
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25 | // } |
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26 | // } |
| 0 | 27 | |
| 150 | 28 | /// Vector spaces |
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29 | #[replace_float_literals(Self::Field::cast_from(literal))] |
| 150 | 30 | pub trait VectorSpace: |
| 31 | Space<OwnedSpace = Self::Owned> | |
| 130 | 32 | + Mul<Self::Field, Output = Self::Owned> |
| 33 | + Div<Self::Field, Output = Self::Owned> | |
| 34 | + Add<Self, Output = Self::Owned> | |
| 35 | + Add<Self::Owned, Output = Self::Owned> | |
| 36 | + Sub<Self, Output = Self::Owned> | |
| 37 | + Sub<Self::Owned, Output = Self::Owned> | |
| 38 | + Neg | |
| 150 | 39 | { |
| 40 | type Field: Num; | |
| 41 | type Owned: ClosedSpace | |
| 42 | + AXPY< | |
| 43 | Self, | |
| 44 | Field = Self::Field, | |
| 45 | Owned = Self::Owned, | |
| 46 | OwnedVariant = Self::Owned, | |
| 47 | OwnedSpace = Self::Owned, | |
| 48 | >; | |
| 49 | ||
| 50 | /// Return a similar zero as `self`. | |
| 51 | fn similar_origin(&self) -> Self::Owned; | |
| 52 | // { | |
| 53 | // self.make_origin_generator().make_origin() | |
| 54 | // } | |
| 55 | ||
| 56 | /// Return a similar zero as `x`. | |
| 57 | fn similar_origin_inst<I: Instance<Self>>(x: I) -> Self::Owned { | |
| 58 | x.eval(|xr| xr.similar_origin()) | |
| 59 | } | |
| 60 | } | |
| 61 | ||
| 62 | /// Efficient in-place summation. | |
| 63 | #[replace_float_literals(Self::Field::cast_from(literal))] | |
| 64 | pub trait AXPY<X = Self>: | |
| 65 | VectorSpace | |
| 66 | + MulAssign<Self::Field> | |
| 67 | + DivAssign<Self::Field> | |
| 68 | + AddAssign<Self> | |
| 69 | + AddAssign<Self::Owned> | |
| 70 | + SubAssign<Self> | |
| 71 | + SubAssign<Self::Owned> | |
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72 | where |
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73 | X: Space, |
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74 | { |
| 0 | 75 | /// Computes `y = βy + αx`, where `y` is `Self`. |
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76 | fn axpy<I: Instance<X>>(&mut self, α: Self::Field, x: I, β: Self::Field); |
| 0 | 77 | |
| 78 | /// Copies `x` to `self`. | |
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79 | fn copy_from<I: Instance<X>>(&mut self, x: I) { |
| 0 | 80 | self.axpy(1.0, x, 0.0) |
| 81 | } | |
| 82 | ||
| 5 | 83 | /// Computes `y = αx`, where `y` is `Self`. |
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84 | fn scale_from<I: Instance<X>>(&mut self, α: Self::Field, x: I) { |
| 0 | 85 | self.axpy(α, x, 0.0) |
| 86 | } | |
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87 | |
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88 | /// Set self to zero. |
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89 | fn set_zero(&mut self); |
| 0 | 90 | } |
| 91 | ||
| 92 | /// Efficient in-place application for [`Linear`] operators. | |
| 93 | #[replace_float_literals(F::cast_from(literal))] | |
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94 | pub trait GEMV<F: Num, X: Space, Y = <Self as Mapping<X>>::Codomain>: Linear<X> { |
| 5 | 95 | /// Computes `y = αAx + βy`, where `A` is `Self`. |
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96 | fn gemv<I: Instance<X>>(&self, y: &mut Y, α: F, x: I, β: F); |
| 0 | 97 | |
| 67 | 98 | #[inline] |
| 5 | 99 | /// Computes `y = Ax`, where `A` is `Self` |
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100 | fn apply_mut<I: Instance<X>>(&self, y: &mut Y, x: I) { |
| 0 | 101 | self.gemv(y, 1.0, x, 0.0) |
| 102 | } | |
| 103 | ||
| 67 | 104 | #[inline] |
| 5 | 105 | /// Computes `y += Ax`, where `A` is `Self` |
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106 | fn apply_add<I: Instance<X>>(&self, y: &mut Y, x: I) { |
| 0 | 107 | self.gemv(y, 1.0, x, 1.0) |
| 108 | } | |
| 109 | } | |
| 110 | ||
| 111 | /// Bounded linear operators | |
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112 | pub trait BoundedLinear<X, XExp, CodExp, F = f64>: Linear<X> |
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113 | where |
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114 | F: Num, |
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115 | X: Space + Norm<XExp, F>, |
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116 | XExp: NormExponent, |
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117 | CodExp: NormExponent, |
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118 | { |
| 0 | 119 | /// A bound on the operator norm $\|A\|$ for the linear operator $A$=`self`. |
| 120 | /// This is not expected to be the norm, just any bound on it that can be | |
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121 | /// reasonably implemented. The [`NormExponent`] `xexp` indicates the norm |
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122 | /// in `X`, and `codexp` in the codomain. |
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123 | /// |
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124 | /// This may fail with an error if the bound is for some reason incalculable. |
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125 | fn opnorm_bound(&self, xexp: XExp, codexp: CodExp) -> DynResult<F>; |
| 0 | 126 | } |
| 127 | ||
| 5 | 128 | // Linear operator application into mutable target. The [`AsRef`] bound |
| 129 | // is used to guarantee compatibility with `Yʹ` and `Self::Codomain`; | |
| 130 | // the former is assumed to be e.g. a view into the latter. | |
| 0 | 131 | |
| 132 | /*impl<X,Y,T> Fn(&X) -> Y for T where T : Linear<X,Codomain=Y> { | |
| 133 | fn call(&self, x : &X) -> Y { | |
| 134 | self.apply(x) | |
| 135 | } | |
| 136 | }*/ | |
| 137 | ||
| 5 | 138 | /// Trait for forming the adjoint operator of `Self`. |
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139 | pub trait Adjointable<X, Yʹ>: Linear<X> |
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140 | where |
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141 | X: Space, |
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142 | Yʹ: Space, |
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143 | { |
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144 | type AdjointCodomain: Space; |
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145 | type Adjoint<'a>: Linear<Yʹ, Codomain = Self::AdjointCodomain> |
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146 | where |
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147 | Self: 'a; |
| 0 | 148 | |
| 149 | /// Form the adjoint operator of `self`. | |
| 150 | fn adjoint(&self) -> Self::Adjoint<'_>; | |
| 151 | } | |
| 152 | ||
| 5 | 153 | /// Trait for forming a preadjoint of an operator. |
| 154 | /// | |
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155 | /// For an operator $A$ this is an operator $A\_\*$ |
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156 | /// such that its adjoint $(A\_\*)^\*=A$. The space `X` is the domain of the `Self` |
| 0 | 157 | /// operator. The space `Ypre` is the predual of its codomain, and should be the |
| 158 | /// domain of the adjointed operator. `Self::Preadjoint` should be | |
| 159 | /// [`Adjointable`]`<'a,Ypre,X>`. | |
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160 | /// We do not make additional restrictions on `Self::Preadjoint` (in particular, it |
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161 | /// does not have to be adjointable) to allow `X` to be a subspace yet the preadjoint |
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162 | /// have the full space as the codomain, etc. |
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163 | pub trait Preadjointable<X: Space, Ypre: Space = <Self as Mapping<X>>::Codomain>: |
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164 | Linear<X> |
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165 | { |
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166 | type PreadjointCodomain: Space; |
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167 | type Preadjoint<'a>: Linear<Ypre, Codomain = Self::PreadjointCodomain> |
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168 | where |
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169 | Self: 'a; |
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170 | |
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171 | /// Form the adjoint operator of `self`. |
| 0 | 172 | fn preadjoint(&self) -> Self::Preadjoint<'_>; |
| 173 | } | |
| 174 | ||
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175 | /// Adjointable operators $A: X → Y$ between reflexive spaces $X$ and $Y$. |
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176 | pub trait SimplyAdjointable<X: Space>: Adjointable<X, <Self as Mapping<X>>::Codomain> {} |
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177 | impl<'a, X: Space, T> SimplyAdjointable<X> for T where |
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178 | T: Adjointable<X, <Self as Mapping<X>>::Codomain> |
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179 | { |
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180 | } |
| 0 | 181 | |
| 182 | /// The identity operator | |
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183 | #[derive(Clone, Copy, Debug, Serialize, Eq, PartialEq)] |
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184 | pub struct IdOp<X>(PhantomData<X>); |
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185 | |
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186 | impl<X> IdOp<X> { |
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187 | pub fn new() -> IdOp<X> { |
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188 | IdOp(PhantomData) |
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189 | } |
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190 | } |
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191 | |
| 150 | 192 | impl<X: Space> Mapping<X> for IdOp<X> { |
| 193 | type Codomain = X::OwnedVariant; | |
| 0 | 194 | |
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195 | fn apply<I: Instance<X>>(&self, x: I) -> X { |
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196 | x.own() |
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197 | } |
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198 | } |
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199 | |
| 150 | 200 | impl<X: Space> Linear<X> for IdOp<X> {} |
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201 | |
| 0 | 202 | #[replace_float_literals(F::cast_from(literal))] |
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203 | impl<F: Num, X, Y> GEMV<F, X, Y> for IdOp<X> |
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204 | where |
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205 | Y: AXPY<X, Field = F>, |
| 150 | 206 | X: Space, |
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207 | { |
| 0 | 208 | // Computes `y = αAx + βy`, where `A` is `Self`. |
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209 | fn gemv<I: Instance<X>>(&self, y: &mut Y, α: F, x: I, β: F) { |
| 0 | 210 | y.axpy(α, x, β) |
| 211 | } | |
| 212 | ||
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213 | fn apply_mut<I: Instance<X>>(&self, y: &mut Y, x: I) { |
| 0 | 214 | y.copy_from(x); |
| 215 | } | |
| 216 | } | |
| 217 | ||
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218 | impl<F, X, E> BoundedLinear<X, E, E, F> for IdOp<X> |
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219 | where |
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220 | X: Space + Clone + Norm<E, F>, |
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221 | F: Num, |
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222 | E: NormExponent, |
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223 | { |
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224 | fn opnorm_bound(&self, _xexp: E, _codexp: E) -> DynResult<F> { |
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225 | Ok(F::ONE) |
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226 | } |
| 0 | 227 | } |
| 228 | ||
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229 | impl<X: Clone + Space> Adjointable<X, X> for IdOp<X> { |
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230 | type AdjointCodomain = X; |
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231 | type Adjoint<'a> |
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232 | = IdOp<X> |
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233 | where |
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234 | X: 'a; |
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235 | |
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236 | fn adjoint(&self) -> Self::Adjoint<'_> { |
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237 | IdOp::new() |
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238 | } |
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239 | } |
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240 | |
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241 | impl<X: Clone + Space> Preadjointable<X, X> for IdOp<X> { |
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242 | type PreadjointCodomain = X; |
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243 | type Preadjoint<'a> |
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244 | = IdOp<X> |
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245 | where |
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246 | X: 'a; |
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247 | |
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248 | fn preadjoint(&self) -> Self::Preadjoint<'_> { |
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249 | IdOp::new() |
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250 | } |
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251 | } |
| 61 | 252 | |
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253 | /// The zero operator from a space to itself |
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254 | #[derive(Clone, Copy, Debug, Serialize, Eq, PartialEq)] |
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255 | pub struct SimpleZeroOp; |
| 66 | 256 | |
| 150 | 257 | impl<X: VectorSpace> Mapping<X> for SimpleZeroOp { |
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258 | type Codomain = X::Owned; |
| 66 | 259 | |
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260 | fn apply<I: Instance<X>>(&self, x: I) -> X::Owned { |
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261 | X::similar_origin_inst(x) |
| 66 | 262 | } |
| 263 | } | |
| 264 | ||
| 150 | 265 | impl<X: VectorSpace> Linear<X> for SimpleZeroOp {} |
| 66 | 266 | |
| 267 | #[replace_float_literals(F::cast_from(literal))] | |
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268 | impl<X, Y, F> GEMV<F, X, Y> for SimpleZeroOp |
| 66 | 269 | where |
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270 | F: Num, |
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271 | Y: AXPY<Field = F>, |
| 150 | 272 | X: VectorSpace<Field = F> + Instance<X>, |
| 66 | 273 | { |
| 274 | // Computes `y = αAx + βy`, where `A` is `Self`. | |
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275 | fn gemv<I: Instance<X>>(&self, y: &mut Y, _α: F, _x: I, β: F) { |
| 66 | 276 | *y *= β; |
| 277 | } | |
| 278 | ||
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279 | fn apply_mut<I: Instance<X>>(&self, y: &mut Y, _x: I) { |
| 66 | 280 | y.set_zero(); |
| 281 | } | |
| 282 | } | |
| 283 | ||
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284 | impl<X, F, E1, E2> BoundedLinear<X, E1, E2, F> for SimpleZeroOp |
| 66 | 285 | where |
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286 | F: Num, |
| 150 | 287 | X: VectorSpace<Field = F> + Norm<E1, F>, |
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288 | E1: NormExponent, |
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289 | E2: NormExponent, |
| 66 | 290 | { |
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291 | fn opnorm_bound(&self, _xexp: E1, _codexp: E2) -> DynResult<F> { |
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292 | Ok(F::ZERO) |
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293 | } |
| 66 | 294 | } |
| 295 | ||
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296 | impl<X, F> Adjointable<X, X::DualSpace> for SimpleZeroOp |
| 66 | 297 | where |
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298 | F: Num, |
| 150 | 299 | X: VectorSpace<Field = F> + HasDual<F>, |
| 300 | X::DualSpace: VectorSpace<Owned = X::DualSpace>, | |
| 66 | 301 | { |
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302 | type AdjointCodomain = X::DualSpace; |
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303 | type Adjoint<'b> |
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304 | = SimpleZeroOp |
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305 | where |
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306 | Self: 'b; |
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307 | // () means not (pre)adjointable. |
| 66 | 308 | |
| 309 | fn adjoint(&self) -> Self::Adjoint<'_> { | |
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310 | SimpleZeroOp |
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311 | } |
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312 | } |
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313 | |
| 150 | 314 | pub trait OriginGenerator<Y: VectorSpace> { |
| 140 | 315 | type Ref<'b>: OriginGenerator<Y> |
| 316 | where | |
| 317 | Self: 'b; | |
| 318 | ||
| 319 | fn origin(&self) -> Y::Owned; | |
| 320 | fn as_ref(&self) -> Self::Ref<'_>; | |
| 321 | } | |
| 322 | ||
| 150 | 323 | impl<Y: VectorSpace> OriginGenerator<Y> for Y { |
| 140 | 324 | type Ref<'b> |
| 325 | = &'b Y | |
| 326 | where | |
| 327 | Self: 'b; | |
| 328 | ||
| 329 | #[inline] | |
| 330 | fn origin(&self) -> Y::Owned { | |
| 331 | return self.similar_origin(); | |
| 332 | } | |
| 333 | ||
| 334 | #[inline] | |
| 335 | fn as_ref(&self) -> Self::Ref<'_> { | |
| 336 | self | |
| 337 | } | |
| 338 | } | |
| 339 | ||
| 150 | 340 | impl<'b, Y: VectorSpace> OriginGenerator<Y> for &'b Y { |
| 140 | 341 | type Ref<'c> |
| 342 | = Self | |
| 343 | where | |
| 344 | Self: 'c; | |
| 345 | ||
| 346 | #[inline] | |
| 347 | fn origin(&self) -> Y::Owned { | |
| 348 | return self.similar_origin(); | |
| 349 | } | |
| 350 | ||
| 351 | #[inline] | |
| 352 | fn as_ref(&self) -> Self::Ref<'_> { | |
| 353 | self | |
| 354 | } | |
| 355 | } | |
| 356 | ||
| 139 | 357 | /// A zero operator that can be eitherh dualised or predualised (once). |
| 358 | /// This is achieved by storing an oppropriate zero. | |
| 150 | 359 | pub struct ZeroOp<X, Y: VectorSpace<Field = F>, OY: OriginGenerator<Y>, O, F: Float = f64> { |
| 140 | 360 | codomain_origin_generator: OY, |
| 361 | other_origin_generator: O, | |
| 139 | 362 | _phantoms: PhantomData<(X, Y, F)>, |
| 363 | } | |
| 364 | ||
| 140 | 365 | impl<X, Y, OY, F> ZeroOp<X, Y, OY, (), F> |
| 139 | 366 | where |
| 140 | 367 | OY: OriginGenerator<Y>, |
| 150 | 368 | X: VectorSpace<Field = F>, |
| 369 | Y: VectorSpace<Field = F>, | |
| 139 | 370 | F: Float, |
| 371 | { | |
| 140 | 372 | pub fn new(y_og: OY) -> Self { |
| 139 | 373 | ZeroOp { |
| 140 | 374 | codomain_origin_generator: y_og, |
| 375 | other_origin_generator: (), | |
| 139 | 376 | _phantoms: PhantomData, |
| 377 | } | |
| 378 | } | |
| 379 | } | |
| 380 | ||
| 140 | 381 | impl<X, Y, OY, OXprime, Xprime, Yprime, F> ZeroOp<X, Y, OY, OXprime, F> |
| 382 | where | |
| 383 | OY: OriginGenerator<Y>, | |
| 384 | OXprime: OriginGenerator<Xprime>, | |
| 385 | X: HasDual<F, DualSpace = Xprime>, | |
| 386 | Y: HasDual<F, DualSpace = Yprime>, | |
| 387 | F: Float, | |
| 150 | 388 | Xprime: VectorSpace<Field = F, Owned = Xprime>, |
| 140 | 389 | Xprime::Owned: AXPY<Field = F>, |
| 390 | Yprime: Space + Instance<Yprime>, | |
| 391 | { | |
| 392 | pub fn new_dualisable(y_og: OY, xprime_og: OXprime) -> Self { | |
| 393 | ZeroOp { | |
| 394 | codomain_origin_generator: y_og, | |
| 395 | other_origin_generator: xprime_og, | |
| 396 | _phantoms: PhantomData, | |
| 397 | } | |
| 398 | } | |
| 399 | } | |
| 400 | ||
| 401 | impl<X, Y, O, OY, F> Mapping<X> for ZeroOp<X, Y, OY, O, F> | |
| 139 | 402 | where |
| 150 | 403 | X: Space, |
| 404 | Y: VectorSpace<Field = F>, | |
| 139 | 405 | F: Float, |
| 140 | 406 | OY: OriginGenerator<Y>, |
| 139 | 407 | { |
| 408 | type Codomain = Y::Owned; | |
| 409 | ||
| 410 | fn apply<I: Instance<X>>(&self, _x: I) -> Y::Owned { | |
| 140 | 411 | self.codomain_origin_generator.origin() |
| 139 | 412 | } |
| 413 | } | |
| 414 | ||
| 140 | 415 | impl<X, Y, OY, O, F> Linear<X> for ZeroOp<X, Y, OY, O, F> |
| 139 | 416 | where |
| 150 | 417 | X: Space, |
| 418 | Y: VectorSpace<Field = F>, | |
| 139 | 419 | F: Float, |
| 140 | 420 | OY: OriginGenerator<Y>, |
| 139 | 421 | { |
| 422 | } | |
| 423 | ||
| 424 | #[replace_float_literals(F::cast_from(literal))] | |
| 140 | 425 | impl<X, Y, OY, O, F> GEMV<F, X, Y> for ZeroOp<X, Y, OY, O, F> |
| 139 | 426 | where |
| 150 | 427 | X: Space, |
| 140 | 428 | Y: AXPY<Field = F, Owned = Y>, |
| 139 | 429 | F: Float, |
| 140 | 430 | OY: OriginGenerator<Y>, |
| 139 | 431 | { |
| 432 | // Computes `y = αAx + βy`, where `A` is `Self`. | |
| 433 | fn gemv<I: Instance<X>>(&self, y: &mut Y, _α: F, _x: I, β: F) { | |
| 434 | *y *= β; | |
| 435 | } | |
| 436 | ||
| 437 | fn apply_mut<I: Instance<X>>(&self, y: &mut Y, _x: I) { | |
| 438 | y.set_zero(); | |
| 439 | } | |
| 440 | } | |
| 441 | ||
| 140 | 442 | impl<X, Y, OY, O, F, E1, E2> BoundedLinear<X, E1, E2, F> for ZeroOp<X, Y, OY, O, F> |
| 139 | 443 | where |
| 444 | X: Space + Instance<X> + Norm<E1, F>, | |
| 150 | 445 | Y: VectorSpace<Field = F>, |
| 139 | 446 | Y::Owned: Clone, |
| 447 | F: Float, | |
| 448 | E1: NormExponent, | |
| 449 | E2: NormExponent, | |
| 140 | 450 | OY: OriginGenerator<Y>, |
| 139 | 451 | { |
| 452 | fn opnorm_bound(&self, _xexp: E1, _codexp: E2) -> DynResult<F> { | |
| 453 | Ok(F::ZERO) | |
| 454 | } | |
| 455 | } | |
| 456 | ||
| 140 | 457 | impl<'b, X, Y, OY, OXprime, Xprime, Yprime, F> Adjointable<X, Yprime> |
| 458 | for ZeroOp<X, Y, OY, OXprime, F> | |
| 139 | 459 | where |
| 460 | X: HasDual<F, DualSpace = Xprime>, | |
| 461 | Y: HasDual<F, DualSpace = Yprime>, | |
| 462 | F: Float, | |
| 150 | 463 | Xprime: VectorSpace<Field = F, Owned = Xprime>, |
| 139 | 464 | Xprime::Owned: AXPY<Field = F>, |
| 465 | Yprime: Space + Instance<Yprime>, | |
| 140 | 466 | OY: OriginGenerator<Y>, |
| 467 | OXprime: OriginGenerator<X::DualSpace>, | |
| 139 | 468 | { |
| 469 | type AdjointCodomain = Xprime; | |
| 470 | type Adjoint<'c> | |
| 140 | 471 | = ZeroOp<Yprime, Xprime, OXprime::Ref<'c>, (), F> |
| 139 | 472 | where |
| 473 | Self: 'c; | |
| 474 | // () means not (pre)adjointable. | |
| 475 | ||
| 476 | fn adjoint(&self) -> Self::Adjoint<'_> { | |
| 477 | ZeroOp { | |
| 140 | 478 | codomain_origin_generator: self.other_origin_generator.as_ref(), |
| 479 | other_origin_generator: (), | |
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480 | _phantoms: PhantomData, |
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481 | } |
| 66 | 482 | } |
| 483 | } | |
| 484 | ||
| 61 | 485 | impl<S, T, E, X> Linear<X> for Composition<S, T, E> |
| 486 | where | |
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487 | X: Space, |
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488 | T: Linear<X>, |
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489 | S: Linear<T::Codomain>, |
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490 | { |
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491 | } |
| 61 | 492 | |
| 493 | impl<F, S, T, E, X, Y> GEMV<F, X, Y> for Composition<S, T, E> | |
| 494 | where | |
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495 | F: Num, |
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496 | X: Space, |
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497 | T: Linear<X>, |
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498 | S: GEMV<F, T::Codomain, Y>, |
| 61 | 499 | { |
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500 | fn gemv<I: Instance<X>>(&self, y: &mut Y, α: F, x: I, β: F) { |
| 61 | 501 | self.outer.gemv(y, α, self.inner.apply(x), β) |
| 502 | } | |
| 503 | ||
| 504 | /// Computes `y = Ax`, where `A` is `Self` | |
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505 | fn apply_mut<I: Instance<X>>(&self, y: &mut Y, x: I) { |
| 61 | 506 | self.outer.apply_mut(y, self.inner.apply(x)) |
| 507 | } | |
| 508 | ||
| 509 | /// Computes `y += Ax`, where `A` is `Self` | |
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510 | fn apply_add<I: Instance<X>>(&self, y: &mut Y, x: I) { |
| 61 | 511 | self.outer.apply_add(y, self.inner.apply(x)) |
| 512 | } | |
| 513 | } | |
| 514 | ||
| 515 | impl<F, S, T, X, Z, Xexp, Yexp, Zexp> BoundedLinear<X, Xexp, Yexp, F> for Composition<S, T, Zexp> | |
| 516 | where | |
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517 | F: Num, |
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518 | X: Space + Norm<Xexp, F>, |
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519 | Z: Space + Norm<Zexp, F>, |
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520 | Xexp: NormExponent, |
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521 | Yexp: NormExponent, |
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522 | Zexp: NormExponent, |
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523 | T: BoundedLinear<X, Xexp, Zexp, F, Codomain = Z>, |
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524 | S: BoundedLinear<Z, Zexp, Yexp, F>, |
| 61 | 525 | { |
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526 | fn opnorm_bound(&self, xexp: Xexp, yexp: Yexp) -> DynResult<F> { |
| 61 | 527 | let zexp = self.intermediate_norm_exponent; |
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528 | Ok(self.outer.opnorm_bound(zexp, yexp)? * self.inner.opnorm_bound(xexp, zexp)?) |
| 61 | 529 | } |
| 530 | } | |
| 531 | ||
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532 | /// “Row operator” $(S, T)$; $(S, T)(x, y)=Sx + Ty$. |
| 101 | 533 | #[derive(Clone, Copy, Debug, Serialize, Eq, PartialEq)] |
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534 | pub struct RowOp<S, T>(pub S, pub T); |
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535 | |
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536 | impl<A, B, S, T> Mapping<Pair<A, B>> for RowOp<S, T> |
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537 | where |
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538 | A: Space, |
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539 | B: Space, |
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540 | S: Mapping<A>, |
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541 | T: Mapping<B>, |
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542 | S::Codomain: Add<T::Codomain>, |
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543 | <S::Codomain as Add<T::Codomain>>::Output: Space, |
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544 | { |
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545 | type Codomain = <S::Codomain as Add<T::Codomain>>::Output; |
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546 | |
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547 | fn apply<I: Instance<Pair<A, B>>>(&self, x: I) -> Self::Codomain { |
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548 | x.eval_decompose(|Pair(a, b)| self.0.apply(a) + self.1.apply(b)) |
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549 | } |
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550 | } |
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551 | |
|
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552 | impl<A, B, S, T> Linear<Pair<A, B>> for RowOp<S, T> |
|
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553 | where |
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554 | A: Space, |
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555 | B: Space, |
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556 | S: Linear<A>, |
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557 | T: Linear<B>, |
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558 | S::Codomain: Add<T::Codomain>, |
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559 | <S::Codomain as Add<T::Codomain>>::Output: Space, |
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560 | { |
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561 | } |
|
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562 | |
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563 | impl<'b, F, S, T, Y, U, V> GEMV<F, Pair<U, V>, Y> for RowOp<S, T> |
|
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564 | where |
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565 | U: Space, |
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566 | V: Space, |
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567 | S: GEMV<F, U, Y>, |
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568 | T: GEMV<F, V, Y>, |
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569 | F: Num, |
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570 | Self: Linear<Pair<U, V>, Codomain = Y>, |
|
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571 | { |
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572 | fn gemv<I: Instance<Pair<U, V>>>(&self, y: &mut Y, α: F, x: I, β: F) { |
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573 | x.eval_decompose(|Pair(u, v)| { |
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574 | self.0.gemv(y, α, u, β); |
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575 | self.1.gemv(y, α, v, F::ONE); |
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576 | }) |
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577 | } |
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578 | |
|
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579 | fn apply_mut<I: Instance<Pair<U, V>>>(&self, y: &mut Y, x: I) { |
|
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580 | x.eval_decompose(|Pair(u, v)| { |
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581 | self.0.apply_mut(y, u); |
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582 | self.1.apply_add(y, v); |
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|
583 | }) |
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584 | } |
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585 | |
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586 | /// Computes `y += Ax`, where `A` is `Self` |
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587 | fn apply_add<I: Instance<Pair<U, V>>>(&self, y: &mut Y, x: I) { |
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588 | x.eval_decompose(|Pair(u, v)| { |
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589 | self.0.apply_add(y, u); |
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590 | self.1.apply_add(y, v); |
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591 | }) |
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|
592 | } |
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593 | } |
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|
594 | |
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595 | /// “Column operator” $(S; T)$; $(S; T)x=(Sx, Tx)$. |
| 101 | 596 | #[derive(Clone, Copy, Debug, Serialize, Eq, PartialEq)] |
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|
597 | pub struct ColOp<S, T>(pub S, pub T); |
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598 | |
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599 | impl<A, S, T> Mapping<A> for ColOp<S, T> |
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|
600 | where |
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|
601 | A: Space, |
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|
602 | S: Mapping<A>, |
|
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parents:
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|
603 | T: Mapping<A>, |
|
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604 | { |
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605 | type Codomain = Pair<S::Codomain, T::Codomain>; |
|
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606 | |
|
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607 | fn apply<I: Instance<A>>(&self, a: I) -> Self::Codomain { |
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608 | Pair(a.eval_ref_decompose(|r| self.0.apply(r)), self.1.apply(a)) |
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|
609 | } |
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610 | } |
|
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611 | |
|
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612 | impl<A, S, T> Linear<A> for ColOp<S, T> |
|
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613 | where |
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parents:
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614 | A: Space, |
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Tuomo Valkonen <tuomov@iki.fi>
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615 | S: Mapping<A>, |
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|
616 | T: Mapping<A>, |
|
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|
617 | { |
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618 | } |
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619 | |
|
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620 | impl<F, S, T, A, B, X> GEMV<F, X, Pair<A, B>> for ColOp<S, T> |
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621 | where |
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|
622 | X: Space, |
|
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623 | S: GEMV<F, X, A>, |
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624 | T: GEMV<F, X, B>, |
|
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625 | F: Num, |
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626 | Self: Linear<X, Codomain = Pair<A, B>>, |
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627 | { |
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628 | fn gemv<I: Instance<X>>(&self, y: &mut Pair<A, B>, α: F, x: I, β: F) { |
|
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629 | x.eval_ref_decompose(|r| self.0.gemv(&mut y.0, α, r, β)); |
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630 | self.1.gemv(&mut y.1, α, x, β); |
|
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631 | } |
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632 | |
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633 | fn apply_mut<I: Instance<X>>(&self, y: &mut Pair<A, B>, x: I) { |
|
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634 | x.eval_ref_decompose(|r| self.0.apply_mut(&mut y.0, r)); |
|
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|
635 | self.1.apply_mut(&mut y.1, x); |
|
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|
636 | } |
|
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637 | |
|
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|
638 | /// Computes `y += Ax`, where `A` is `Self` |
|
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Tuomo Valkonen <tuomov@iki.fi>
parents:
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639 | fn apply_add<I: Instance<X>>(&self, y: &mut Pair<A, B>, x: I) { |
|
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640 | x.eval_ref_decompose(|r| self.0.apply_add(&mut y.0, r)); |
|
57
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|
641 | self.1.apply_add(&mut y.1, x); |
|
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diff
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|
642 | } |
|
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643 | } |
|
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Tuomo Valkonen <tuomov@iki.fi>
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|
644 | |
|
99
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74
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|
645 | impl<A, B, Yʹ, S, T> Adjointable<Pair<A, B>, Yʹ> for RowOp<S, T> |
|
57
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646 | where |
|
99
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|
647 | A: Space, |
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Tuomo Valkonen <tuomov@iki.fi>
parents:
74
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648 | B: Space, |
|
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Tuomo Valkonen <tuomov@iki.fi>
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|
649 | Yʹ: Space, |
|
9e5b9fc81c52
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changeset
|
650 | S: Adjointable<A, Yʹ>, |
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Tuomo Valkonen <tuomov@iki.fi>
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74
diff
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|
651 | T: Adjointable<B, Yʹ>, |
|
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|
652 | Self: Linear<Pair<A, B>>, |
|
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653 | // for<'a> ColOp<S::Adjoint<'a>, T::Adjoint<'a>> : Linear< |
|
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654 | // Yʹ, |
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655 | // Codomain=Pair<S::AdjointCodomain, T::AdjointCodomain> |
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656 | // >, |
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657 | { |
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658 | type AdjointCodomain = Pair<S::AdjointCodomain, T::AdjointCodomain>; |
|
99
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659 | type Adjoint<'a> |
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Tuomo Valkonen <tuomov@iki.fi>
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660 | = ColOp<S::Adjoint<'a>, T::Adjoint<'a>> |
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661 | where |
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662 | Self: 'a; |
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663 | |
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664 | fn adjoint(&self) -> Self::Adjoint<'_> { |
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665 | ColOp(self.0.adjoint(), self.1.adjoint()) |
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666 | } |
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667 | } |
|
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Tuomo Valkonen <tuomov@iki.fi>
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|
668 | |
|
99
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669 | impl<A, B, Yʹ, S, T> Preadjointable<Pair<A, B>, Yʹ> for RowOp<S, T> |
|
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670 | where |
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671 | A: Space, |
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74
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672 | B: Space, |
|
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673 | Yʹ: Space, |
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|
674 | S: Preadjointable<A, Yʹ>, |
|
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74
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675 | T: Preadjointable<B, Yʹ>, |
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676 | Self: Linear<Pair<A, B>>, |
|
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Tuomo Valkonen <tuomov@iki.fi>
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74
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|
677 | for<'a> ColOp<S::Preadjoint<'a>, T::Preadjoint<'a>>: |
|
9e5b9fc81c52
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74
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|
678 | Linear<Yʹ, Codomain = Pair<S::PreadjointCodomain, T::PreadjointCodomain>>, |
|
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679 | { |
|
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680 | type PreadjointCodomain = Pair<S::PreadjointCodomain, T::PreadjointCodomain>; |
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99
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|
681 | type Preadjoint<'a> |
|
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682 | = ColOp<S::Preadjoint<'a>, T::Preadjoint<'a>> |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
683 | where |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
684 | Self: 'a; |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
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13
diff
changeset
|
685 | |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
686 | fn preadjoint(&self) -> Self::Preadjoint<'_> { |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
687 | ColOp(self.0.preadjoint(), self.1.preadjoint()) |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
688 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
689 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
690 | |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
691 | impl<A, Xʹ, Yʹ, R, S, T> Adjointable<A, Pair<Xʹ, Yʹ>> for ColOp<S, T> |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
692 | where |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
693 | A: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
694 | Xʹ: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
695 | Yʹ: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
696 | R: Space + ClosedAdd, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
697 | S: Adjointable<A, Xʹ, AdjointCodomain = R>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
698 | T: Adjointable<A, Yʹ, AdjointCodomain = R>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
699 | Self: Linear<A>, |
|
59
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
700 | // for<'a> RowOp<S::Adjoint<'a>, T::Adjoint<'a>> : Linear< |
|
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
701 | // Pair<Xʹ,Yʹ>, |
|
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
702 | // Codomain=R, |
|
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
703 | // >, |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
704 | { |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
705 | type AdjointCodomain = R; |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
706 | type Adjoint<'a> |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
707 | = RowOp<S::Adjoint<'a>, T::Adjoint<'a>> |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
708 | where |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
709 | Self: 'a; |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
710 | |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
711 | fn adjoint(&self) -> Self::Adjoint<'_> { |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
712 | RowOp(self.0.adjoint(), self.1.adjoint()) |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
713 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
714 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
715 | |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
716 | impl<A, Xʹ, Yʹ, R, S, T> Preadjointable<A, Pair<Xʹ, Yʹ>> for ColOp<S, T> |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
717 | where |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
718 | A: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
719 | Xʹ: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
720 | Yʹ: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
721 | R: Space + ClosedAdd, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
722 | S: Preadjointable<A, Xʹ, PreadjointCodomain = R>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
723 | T: Preadjointable<A, Yʹ, PreadjointCodomain = R>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
724 | Self: Linear<A>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
725 | for<'a> RowOp<S::Preadjoint<'a>, T::Preadjoint<'a>>: Linear<Pair<Xʹ, Yʹ>, Codomain = R>, |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
726 | { |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
727 | type PreadjointCodomain = R; |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
728 | type Preadjoint<'a> |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
729 | = RowOp<S::Preadjoint<'a>, T::Preadjoint<'a>> |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
730 | where |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
731 | Self: 'a; |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
732 | |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
733 | fn preadjoint(&self) -> Self::Preadjoint<'_> { |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
734 | RowOp(self.0.preadjoint(), self.1.preadjoint()) |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
735 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
736 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
737 | |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
738 | /// Diagonal operator |
| 101 | 739 | #[derive(Clone, Copy, Debug, Serialize, Eq, PartialEq)] |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
740 | pub struct DiagOp<S, T>(pub S, pub T); |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
741 | |
|
59
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
742 | impl<A, B, S, T> Mapping<Pair<A, B>> for DiagOp<S, T> |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
743 | where |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
744 | A: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
745 | B: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
746 | S: Mapping<A>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
747 | T: Mapping<B>, |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
748 | { |
|
59
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
749 | type Codomain = Pair<S::Codomain, T::Codomain>; |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
750 | |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
751 | fn apply<I: Instance<Pair<A, B>>>(&self, x: I) -> Self::Codomain { |
|
133
2b13f8a0c8ba
Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
752 | x.eval_decompose(|Pair(a, b)| Pair(self.0.apply(a), self.1.apply(b))) |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
753 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
754 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
755 | |
|
59
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
756 | impl<A, B, S, T> Linear<Pair<A, B>> for DiagOp<S, T> |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
757 | where |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
758 | A: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
759 | B: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
760 | S: Linear<A>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
761 | T: Linear<B>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
762 | { |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
763 | } |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
764 | |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
765 | impl<F, S, T, A, B, U, V> GEMV<F, Pair<U, V>, Pair<A, B>> for DiagOp<S, T> |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
766 | where |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
767 | A: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
768 | B: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
769 | U: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
770 | V: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
771 | S: GEMV<F, U, A>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
772 | T: GEMV<F, V, B>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
773 | F: Num, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
774 | Self: Linear<Pair<U, V>, Codomain = Pair<A, B>>, |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
775 | { |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
776 | fn gemv<I: Instance<Pair<U, V>>>(&self, y: &mut Pair<A, B>, α: F, x: I, β: F) { |
|
133
2b13f8a0c8ba
Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
777 | x.eval_decompose(|Pair(u, v)| { |
|
2b13f8a0c8ba
Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
778 | self.0.gemv(&mut y.0, α, u, β); |
|
2b13f8a0c8ba
Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
779 | self.1.gemv(&mut y.1, α, v, β); |
|
2b13f8a0c8ba
Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
780 | }) |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
781 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
782 | |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
783 | fn apply_mut<I: Instance<Pair<U, V>>>(&self, y: &mut Pair<A, B>, x: I) { |
|
133
2b13f8a0c8ba
Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
784 | x.eval_decompose(|Pair(u, v)| { |
|
2b13f8a0c8ba
Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
785 | self.0.apply_mut(&mut y.0, u); |
|
2b13f8a0c8ba
Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
786 | self.1.apply_mut(&mut y.1, v); |
|
2b13f8a0c8ba
Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
787 | }) |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
788 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
789 | |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
790 | /// Computes `y += Ax`, where `A` is `Self` |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
791 | fn apply_add<I: Instance<Pair<U, V>>>(&self, y: &mut Pair<A, B>, x: I) { |
|
133
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Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
792 | x.eval_decompose(|Pair(u, v)| { |
|
2b13f8a0c8ba
Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
793 | self.0.apply_add(&mut y.0, u); |
|
2b13f8a0c8ba
Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
794 | self.1.apply_add(&mut y.1, v); |
|
2b13f8a0c8ba
Replace Instance ref_instance and decompose by eval_* for flexibility
Tuomo Valkonen <tuomov@iki.fi>
parents:
130
diff
changeset
|
795 | }) |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
796 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
797 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
798 | |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
799 | impl<A, B, Xʹ, Yʹ, R, S, T> Adjointable<Pair<A, B>, Pair<Xʹ, Yʹ>> for DiagOp<S, T> |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
800 | where |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
801 | A: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
802 | B: Space, |
|
59
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
803 | Xʹ: Space, |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
804 | Yʹ: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
805 | R: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
806 | S: Adjointable<A, Xʹ>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
807 | T: Adjointable<B, Yʹ>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
808 | Self: Linear<Pair<A, B>>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
809 | for<'a> DiagOp<S::Adjoint<'a>, T::Adjoint<'a>>: Linear<Pair<Xʹ, Yʹ>, Codomain = R>, |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
810 | { |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
811 | type AdjointCodomain = R; |
|
99
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Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
812 | type Adjoint<'a> |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
813 | = DiagOp<S::Adjoint<'a>, T::Adjoint<'a>> |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
814 | where |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
815 | Self: 'a; |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
816 | |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
817 | fn adjoint(&self) -> Self::Adjoint<'_> { |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
818 | DiagOp(self.0.adjoint(), self.1.adjoint()) |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
819 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
820 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
821 | |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
822 | impl<A, B, Xʹ, Yʹ, R, S, T> Preadjointable<Pair<A, B>, Pair<Xʹ, Yʹ>> for DiagOp<S, T> |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
823 | where |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
824 | A: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
825 | B: Space, |
|
59
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Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
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changeset
|
826 | Xʹ: Space, |
|
99
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Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
827 | Yʹ: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
828 | R: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
829 | S: Preadjointable<A, Xʹ>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
830 | T: Preadjointable<B, Yʹ>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
831 | Self: Linear<Pair<A, B>>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
832 | for<'a> DiagOp<S::Preadjoint<'a>, T::Preadjoint<'a>>: Linear<Pair<Xʹ, Yʹ>, Codomain = R>, |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
833 | { |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
834 | type PreadjointCodomain = R; |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
835 | type Preadjoint<'a> |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
836 | = DiagOp<S::Preadjoint<'a>, T::Preadjoint<'a>> |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
837 | where |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
838 | Self: 'a; |
|
57
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
839 | |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
840 | fn preadjoint(&self) -> Self::Preadjoint<'_> { |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
841 | DiagOp(self.0.preadjoint(), self.1.preadjoint()) |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
842 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
843 | } |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
844 | |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
845 | /// Block operator |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
846 | pub type BlockOp<S11, S12, S21, S22> = ColOp<RowOp<S11, S12>, RowOp<S21, S22>>; |
|
1b3b1687b9ed
Add direct products (Pair, RowOp, ColOp, DiagOp)
Tuomo Valkonen <tuomov@iki.fi>
parents:
13
diff
changeset
|
847 | |
|
59
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
848 | macro_rules! pairnorm { |
|
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
849 | ($expj:ty) => { |
|
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
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|
850 | impl<F, A, B, S, T, ExpA, ExpB, ExpR> |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
851 | BoundedLinear<Pair<A, B>, PairNorm<ExpA, ExpB, $expj>, ExpR, F> for RowOp<S, T> |
|
59
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Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
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|
852 | where |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
853 | F: Float, |
|
124
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Transpose loc parameters to allow f64 defaults
Tuomo Valkonen <tuomov@iki.fi>
parents:
110
diff
changeset
|
854 | A: Space + Norm<ExpA, F>, |
|
6aa955ad8122
Transpose loc parameters to allow f64 defaults
Tuomo Valkonen <tuomov@iki.fi>
parents:
110
diff
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|
855 | B: Space + Norm<ExpB, F>, |
|
99
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Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
856 | S: BoundedLinear<A, ExpA, ExpR, F>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
857 | T: BoundedLinear<B, ExpB, ExpR, F>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
858 | S::Codomain: Add<T::Codomain>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
859 | <S::Codomain as Add<T::Codomain>>::Output: Space, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
860 | ExpA: NormExponent, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
861 | ExpB: NormExponent, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
862 | ExpR: NormExponent, |
|
59
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Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
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|
863 | { |
|
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
864 | fn opnorm_bound( |
|
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Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
865 | &self, |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
866 | PairNorm(expa, expb, _): PairNorm<ExpA, ExpB, $expj>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
867 | expr: ExpR, |
|
110
a1278320be26
Use DynResult for Lipschitz factors and operator norm bounds
Tuomo Valkonen <tuomov@iki.fi>
parents:
104
diff
changeset
|
868 | ) -> DynResult<F> { |
|
59
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Tuomo Valkonen <tuomov@iki.fi>
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57
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|
869 | // An application of the triangle inequality bounds the norm by the maximum |
|
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Significantly simplify Mapping / Apply through Instance
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parents:
57
diff
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|
870 | // of the individual norms. A simple observation shows this to be exact. |
|
110
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Use DynResult for Lipschitz factors and operator norm bounds
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parents:
104
diff
changeset
|
871 | let na = self.0.opnorm_bound(expa, expr)?; |
|
a1278320be26
Use DynResult for Lipschitz factors and operator norm bounds
Tuomo Valkonen <tuomov@iki.fi>
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104
diff
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|
872 | let nb = self.1.opnorm_bound(expb, expr)?; |
|
a1278320be26
Use DynResult for Lipschitz factors and operator norm bounds
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|
873 | Ok(na.max(nb)) |
|
59
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parents:
57
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|
874 | } |
|
9226980e45a7
Significantly simplify Mapping / Apply through Instance
Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
changeset
|
875 | } |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
876 | |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
877 | impl<F, A, S, T, ExpA, ExpS, ExpT> BoundedLinear<A, ExpA, PairNorm<ExpS, ExpT, $expj>, F> |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
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changeset
|
878 | for ColOp<S, T> |
|
59
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Tuomo Valkonen <tuomov@iki.fi>
parents:
57
diff
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|
879 | where |
|
99
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Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
880 | F: Float, |
|
124
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Transpose loc parameters to allow f64 defaults
Tuomo Valkonen <tuomov@iki.fi>
parents:
110
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changeset
|
881 | A: Space + Norm<ExpA, F>, |
|
99
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
882 | S: BoundedLinear<A, ExpA, ExpS, F>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
changeset
|
883 | T: BoundedLinear<A, ExpA, ExpT, F>, |
|
9e5b9fc81c52
Quadratic Mappings; Lipschitz trait (moved from pointsource_algs).
Tuomo Valkonen <tuomov@iki.fi>
parents:
74
diff
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884 | ExpA: NormExponent, |
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885 | ExpS: NormExponent, |
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886 | ExpT: NormExponent, |
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887 | { |
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888 | fn opnorm_bound( |
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889 | &self, |
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890 | expa: ExpA, |
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891 | PairNorm(exps, expt, _): PairNorm<ExpS, ExpT, $expj>, |
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892 | ) -> DynResult<F> { |
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893 | // This is based on the rule for RowOp and ‖A^*‖ = ‖A‖, hence, |
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894 | // for A=[S; T], ‖A‖=‖[S^*, T^*]‖ ≤ max{‖S^*‖, ‖T^*‖} = max{‖S‖, ‖T‖} |
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895 | let ns = self.0.opnorm_bound(expa, exps)?; |
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896 | let nt = self.1.opnorm_bound(expa, expt)?; |
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897 | Ok(ns.max(nt)) |
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898 | } |
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899 | } |
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900 | }; |
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901 | } |
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902 | |
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903 | pairnorm!(L1); |
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904 | pairnorm!(L2); |
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905 | pairnorm!(Linfinity); |
| 104 | 906 | |
| 907 | /// The simplest linear mapping, scaling by a scalar. | |
| 908 | /// | |
| 909 | /// TODO: redefined/replace [`Weighted`] by composition with [`Scaled`]. | |
| 910 | pub struct Scaled<F: Float>(pub F); | |
| 911 | ||
| 912 | impl<Domain, F> Mapping<Domain> for Scaled<F> | |
| 913 | where | |
| 914 | F: Float, | |
| 915 | Domain: Space + ClosedMul<F>, | |
| 916 | { | |
| 917 | type Codomain = <Domain as Mul<F>>::Output; | |
| 918 | ||
| 919 | /// Compute the value of `self` at `x`. | |
| 920 | fn apply<I: Instance<Domain>>(&self, x: I) -> Self::Codomain { | |
| 921 | x.own() * self.0 | |
| 922 | } | |
| 923 | } | |
| 924 | ||
| 925 | impl<Domain, F> Linear<Domain> for Scaled<F> | |
| 926 | where | |
| 927 | F: Float, | |
| 928 | Domain: Space + ClosedMul<F>, | |
| 929 | { | |
| 930 | } |