1 // Copyright (c) 2017-2024, Lawrence Livermore National Security, LLC and other CEED contributors. 2 // All Rights Reserved. See the top-level LICENSE and NOTICE files for details. 3 // 4 // SPDX-License-Identifier: BSD-2-Clause 5 // 6 // This file is part of CEED: http://github.com/ceed 7 8 //! A Ceed Vector constitutes the main data structure and serves as input/output 9 //! for Ceed Operators. 10 11 use std::{ 12 ops::{Deref, DerefMut}, 13 os::raw::c_char, 14 }; 15 16 use crate::prelude::*; 17 18 // ----------------------------------------------------------------------------- 19 // Vector option 20 // ----------------------------------------------------------------------------- 21 #[derive(Debug)] 22 pub enum VectorOpt<'a> { 23 Some(&'a Vector<'a>), 24 Active, 25 None, 26 } 27 /// Construct a VectorOpt reference from a Vector reference 28 impl<'a> From<&'a Vector<'_>> for VectorOpt<'a> { 29 fn from(vec: &'a Vector) -> Self { 30 debug_assert!(vec.ptr != unsafe { bind_ceed::CEED_VECTOR_ACTIVE }); 31 debug_assert!(vec.ptr != unsafe { bind_ceed::CEED_VECTOR_NONE }); 32 Self::Some(vec) 33 } 34 } 35 impl<'a> VectorOpt<'a> { 36 /// Transform a Rust libCEED VectorOpt into C libCEED CeedVector 37 pub(crate) fn to_raw(self) -> bind_ceed::CeedVector { 38 match self { 39 Self::Some(vec) => vec.ptr, 40 Self::Active => unsafe { bind_ceed::CEED_VECTOR_ACTIVE }, 41 Self::None => unsafe { bind_ceed::CEED_VECTOR_NONE }, 42 } 43 } 44 45 /// Check if a VectorOpt is Some 46 /// 47 /// ``` 48 /// # use libceed::prelude::*; 49 /// # fn main() -> libceed::Result<()> { 50 /// # let ceed = libceed::Ceed::default_init(); 51 /// let vec = libceed::vector::Vector::from_slice(&ceed, &[1., 2., 3.])?; 52 /// let vec_opt = VectorOpt::from(&vec); 53 /// assert!(vec_opt.is_some(), "Incorrect VectorOpt"); 54 /// 55 /// let vec_opt = VectorOpt::Active; 56 /// assert!(!vec_opt.is_some(), "Incorrect VectorOpt"); 57 /// 58 /// let vec_opt = VectorOpt::None; 59 /// assert!(!vec_opt.is_some(), "Incorrect VectorOpt"); 60 /// # Ok(()) 61 /// # } 62 /// ``` 63 pub fn is_some(&self) -> bool { 64 match self { 65 Self::Some(_) => true, 66 Self::Active => false, 67 Self::None => false, 68 } 69 } 70 71 /// Check if a VectorOpt is Active 72 /// 73 /// ``` 74 /// # use libceed::prelude::*; 75 /// # fn main() -> libceed::Result<()> { 76 /// # let ceed = libceed::Ceed::default_init(); 77 /// let vec = libceed::vector::Vector::from_slice(&ceed, &[1., 2., 3.])?; 78 /// let vec_opt = VectorOpt::from(&vec); 79 /// assert!(!vec_opt.is_active(), "Incorrect VectorOpt"); 80 /// 81 /// let vec_opt = VectorOpt::Active; 82 /// assert!(vec_opt.is_active(), "Incorrect VectorOpt"); 83 /// 84 /// let vec_opt = VectorOpt::None; 85 /// assert!(!vec_opt.is_active(), "Incorrect VectorOpt"); 86 /// # Ok(()) 87 /// # } 88 /// ``` 89 pub fn is_active(&self) -> bool { 90 match self { 91 Self::Some(_) => false, 92 Self::Active => true, 93 Self::None => false, 94 } 95 } 96 97 /// Check if a VectorOpt is Some 98 /// 99 /// ``` 100 /// # use libceed::prelude::*; 101 /// # fn main() -> libceed::Result<()> { 102 /// # let ceed = libceed::Ceed::default_init(); 103 /// let vec = libceed::vector::Vector::from_slice(&ceed, &[1., 2., 3.])?; 104 /// let vec_opt = VectorOpt::from(&vec); 105 /// assert!(!vec_opt.is_none(), "Incorrect VectorOpt"); 106 /// 107 /// let vec_opt = VectorOpt::Active; 108 /// assert!(!vec_opt.is_none(), "Incorrect VectorOpt"); 109 /// 110 /// let vec_opt = VectorOpt::None; 111 /// assert!(vec_opt.is_none(), "Incorrect VectorOpt"); 112 /// # Ok(()) 113 /// # } 114 /// ``` 115 pub fn is_none(&self) -> bool { 116 match self { 117 Self::Some(_) => false, 118 Self::Active => false, 119 Self::None => true, 120 } 121 } 122 } 123 124 // ----------------------------------------------------------------------------- 125 // Vector borrowed slice wrapper 126 // ----------------------------------------------------------------------------- 127 pub struct VectorSliceWrapper<'a> { 128 pub(crate) vector: crate::Vector<'a>, 129 pub(crate) _slice: &'a mut [crate::Scalar], 130 } 131 132 // ----------------------------------------------------------------------------- 133 // Destructor 134 // ----------------------------------------------------------------------------- 135 impl<'a> Drop for VectorSliceWrapper<'a> { 136 fn drop(&mut self) { 137 unsafe { 138 bind_ceed::CeedVectorTakeArray( 139 self.vector.ptr, 140 crate::MemType::Host as bind_ceed::CeedMemType, 141 std::ptr::null_mut(), 142 ) 143 }; 144 } 145 } 146 147 // ----------------------------------------------------------------------------- 148 // Convenience constructor 149 // ----------------------------------------------------------------------------- 150 impl<'a> VectorSliceWrapper<'a> { 151 fn from_vector_and_slice_mut<'b>( 152 vec: &'b mut crate::Vector, 153 slice: &'a mut [crate::Scalar], 154 ) -> crate::Result<Self> { 155 assert_eq!(vec.length(), slice.len()); 156 let (host, copy_mode) = ( 157 crate::MemType::Host as bind_ceed::CeedMemType, 158 crate::CopyMode::UsePointer as bind_ceed::CeedCopyMode, 159 ); 160 vec.check_error(unsafe { 161 bind_ceed::CeedVectorSetArray( 162 vec.ptr, 163 host, 164 copy_mode, 165 slice.as_ptr() as *mut crate::Scalar, 166 ) 167 })?; 168 Ok(Self { 169 vector: crate::Vector::from_raw(vec.ptr_copy_mut()?)?, 170 _slice: slice, 171 }) 172 } 173 } 174 175 // ----------------------------------------------------------------------------- 176 // Vector context wrapper 177 // ----------------------------------------------------------------------------- 178 #[derive(Debug)] 179 pub struct Vector<'a> { 180 pub(crate) ptr: bind_ceed::CeedVector, 181 _lifeline: PhantomData<&'a ()>, 182 } 183 impl From<&'_ Vector<'_>> for bind_ceed::CeedVector { 184 fn from(vec: &Vector) -> Self { 185 vec.ptr 186 } 187 } 188 189 // ----------------------------------------------------------------------------- 190 // Destructor 191 // ----------------------------------------------------------------------------- 192 impl<'a> Drop for Vector<'a> { 193 fn drop(&mut self) { 194 let not_none_and_active = self.ptr != unsafe { bind_ceed::CEED_VECTOR_NONE } 195 && self.ptr != unsafe { bind_ceed::CEED_VECTOR_ACTIVE }; 196 197 if not_none_and_active { 198 unsafe { bind_ceed::CeedVectorDestroy(&mut self.ptr) }; 199 } 200 } 201 } 202 203 // ----------------------------------------------------------------------------- 204 // Display 205 // ----------------------------------------------------------------------------- 206 impl<'a> fmt::Display for Vector<'a> { 207 /// View a Vector 208 /// 209 /// ``` 210 /// # use libceed::prelude::*; 211 /// # fn main() -> libceed::Result<()> { 212 /// # let ceed = libceed::Ceed::default_init(); 213 /// let vec = libceed::vector::Vector::from_slice(&ceed, &[1., 2., 3.])?; 214 /// assert_eq!( 215 /// vec.to_string(), 216 /// "CeedVector length 3 217 /// 1.00000000 218 /// 2.00000000 219 /// 3.00000000 220 /// " 221 /// ); 222 /// # Ok(()) 223 /// # } 224 /// ``` 225 fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result { 226 let mut ptr = std::ptr::null_mut(); 227 let mut sizeloc = crate::MAX_BUFFER_LENGTH; 228 let format = CString::new("%12.8f").expect("CString::new failed"); 229 let format_c: *const c_char = format.into_raw(); 230 let cstring = unsafe { 231 let file = bind_ceed::open_memstream(&mut ptr, &mut sizeloc); 232 bind_ceed::CeedVectorView(self.ptr, format_c, file); 233 bind_ceed::fclose(file); 234 CString::from_raw(ptr) 235 }; 236 cstring.to_string_lossy().fmt(f) 237 } 238 } 239 240 // ----------------------------------------------------------------------------- 241 // Implementations 242 // ----------------------------------------------------------------------------- 243 impl<'a> Vector<'a> { 244 // Constructors 245 pub fn create(ceed: &crate::Ceed, n: usize) -> crate::Result<Self> { 246 let n = isize::try_from(n).unwrap(); 247 let mut ptr = std::ptr::null_mut(); 248 ceed.check_error(unsafe { bind_ceed::CeedVectorCreate(ceed.ptr, n, &mut ptr) })?; 249 Ok(Self { 250 ptr, 251 _lifeline: PhantomData, 252 }) 253 } 254 255 pub(crate) fn from_raw(ptr: bind_ceed::CeedVector) -> crate::Result<Self> { 256 Ok(Self { 257 ptr, 258 _lifeline: PhantomData, 259 }) 260 } 261 262 fn ptr_copy_mut(&mut self) -> crate::Result<bind_ceed::CeedVector> { 263 let mut ptr_copy = std::ptr::null_mut(); 264 self.check_error(unsafe { bind_ceed::CeedVectorReferenceCopy(self.ptr, &mut ptr_copy) })?; 265 Ok(ptr_copy) 266 } 267 268 /// Copy the array of self into vec_copy 269 /// 270 /// # arguments 271 /// 272 /// * `vec_source` - vector to copy array values from 273 /// 274 /// ``` 275 /// # use libceed::prelude::*; 276 /// # fn main() -> libceed::Result<()> { 277 /// # let ceed = libceed::Ceed::default_init(); 278 /// let a = ceed.vector_from_slice(&[1., 2., 3.])?; 279 /// let mut b = ceed.vector(3)?; 280 /// 281 /// b.copy_from(&a)?; 282 /// for (i, v) in b.view()?.iter().enumerate() { 283 /// assert_eq!(*v, (i + 1) as Scalar, "Copy contents not set correctly"); 284 /// } 285 /// # Ok(()) 286 /// # } 287 /// ``` 288 /// ``` 289 pub fn copy_from(&mut self, vec_source: &crate::Vector) -> crate::Result<i32> { 290 self.check_error(unsafe { bind_ceed::CeedVectorCopy(vec_source.ptr, self.ptr) }) 291 } 292 293 /// Create a Vector from a slice 294 /// 295 /// # arguments 296 /// 297 /// * `slice` - values to initialize vector with 298 /// 299 /// ``` 300 /// # use libceed::prelude::*; 301 /// # fn main() -> libceed::Result<()> { 302 /// # let ceed = libceed::Ceed::default_init(); 303 /// let vec = vector::Vector::from_slice(&ceed, &[1., 2., 3.])?; 304 /// assert_eq!(vec.length(), 3, "Incorrect length from slice"); 305 /// # Ok(()) 306 /// # } 307 /// ``` 308 pub fn from_slice(ceed: &crate::Ceed, v: &[crate::Scalar]) -> crate::Result<Self> { 309 let mut x = Self::create(ceed, v.len())?; 310 x.set_slice(v)?; 311 Ok(x) 312 } 313 314 /// Create a Vector from a mutable array reference 315 /// 316 /// # arguments 317 /// 318 /// * `slice` - values to initialize vector with 319 /// 320 /// ``` 321 /// # use libceed::prelude::*; 322 /// # fn main() -> libceed::Result<()> { 323 /// # let ceed = libceed::Ceed::default_init(); 324 /// let mut rust_vec = vec![1., 2., 3.]; 325 /// let vec = libceed::vector::Vector::from_array(&ceed, &mut rust_vec)?; 326 /// 327 /// assert_eq!(vec.length(), 3, "Incorrect length from slice"); 328 /// # Ok(()) 329 /// # } 330 /// ``` 331 pub fn from_array(ceed: &crate::Ceed, v: &mut [crate::Scalar]) -> crate::Result<Self> { 332 let x = Self::create(ceed, v.len())?; 333 let (host, user_pointer) = ( 334 crate::MemType::Host as bind_ceed::CeedMemType, 335 crate::CopyMode::UsePointer as bind_ceed::CeedCopyMode, 336 ); 337 let v = v.as_ptr() as *mut crate::Scalar; 338 ceed.check_error(unsafe { bind_ceed::CeedVectorSetArray(x.ptr, host, user_pointer, v) })?; 339 Ok(x) 340 } 341 342 // Raw Ceed for error handling 343 #[doc(hidden)] 344 fn ceed(&self) -> bind_ceed::Ceed { 345 unsafe { bind_ceed::CeedVectorReturnCeed(self.ptr) } 346 } 347 348 // Error handling 349 #[doc(hidden)] 350 fn check_error(&self, ierr: i32) -> crate::Result<i32> { 351 crate::check_error(|| self.ceed(), ierr) 352 } 353 354 /// Returns the length of a Vector 355 /// 356 /// ``` 357 /// # use libceed::prelude::*; 358 /// # fn main() -> libceed::Result<()> { 359 /// # let ceed = libceed::Ceed::default_init(); 360 /// let vec = ceed.vector(10)?; 361 /// 362 /// let n = vec.length(); 363 /// assert_eq!(n, 10, "Incorrect length"); 364 /// # Ok(()) 365 /// # } 366 /// ``` 367 pub fn length(&self) -> usize { 368 let mut n = 0; 369 unsafe { bind_ceed::CeedVectorGetLength(self.ptr, &mut n) }; 370 usize::try_from(n).unwrap() 371 } 372 373 /// Returns the length of a Vector 374 /// 375 /// ``` 376 /// # use libceed::prelude::*; 377 /// # fn main() -> libceed::Result<()> { 378 /// # let ceed = libceed::Ceed::default_init(); 379 /// let vec = ceed.vector(10)?; 380 /// assert_eq!(vec.len(), 10, "Incorrect length"); 381 /// # Ok(()) 382 /// # } 383 /// ``` 384 pub fn len(&self) -> usize { 385 self.length() 386 } 387 388 /// Set the Vector to a constant value 389 /// 390 /// # arguments 391 /// 392 /// * `val` - Value to be used 393 /// 394 /// ``` 395 /// # use libceed::prelude::*; 396 /// # fn main() -> libceed::Result<()> { 397 /// # let ceed = libceed::Ceed::default_init(); 398 /// let len = 10; 399 /// let mut vec = ceed.vector(len)?; 400 /// 401 /// let val = 42.0; 402 /// vec.set_value(val)?; 403 /// 404 /// for v in vec.view()?.iter() { 405 /// assert_eq!(*v, val, "Value not set correctly"); 406 /// } 407 /// # Ok(()) 408 /// # } 409 /// ``` 410 pub fn set_value(&mut self, value: crate::Scalar) -> crate::Result<i32> { 411 self.check_error(unsafe { bind_ceed::CeedVectorSetValue(self.ptr, value) }) 412 } 413 414 /// Set values from a slice of the same length 415 /// 416 /// # arguments 417 /// 418 /// * `slice` - values to into self; length must match 419 /// 420 /// ``` 421 /// # use libceed::prelude::*; 422 /// # fn main() -> libceed::Result<()> { 423 /// # let ceed = libceed::Ceed::default_init(); 424 /// let mut vec = ceed.vector(4)?; 425 /// vec.set_slice(&[10., 11., 12., 13.])?; 426 /// 427 /// for (i, v) in vec.view()?.iter().enumerate() { 428 /// assert_eq!(*v, 10. + i as Scalar, "Slice not set correctly"); 429 /// } 430 /// # Ok(()) 431 /// # } 432 /// ``` 433 pub fn set_slice(&mut self, slice: &[crate::Scalar]) -> crate::Result<i32> { 434 assert_eq!(self.length(), slice.len()); 435 let (host, copy_mode) = ( 436 crate::MemType::Host as bind_ceed::CeedMemType, 437 crate::CopyMode::CopyValues as bind_ceed::CeedCopyMode, 438 ); 439 self.check_error(unsafe { 440 bind_ceed::CeedVectorSetArray( 441 self.ptr, 442 host, 443 copy_mode, 444 slice.as_ptr() as *mut crate::Scalar, 445 ) 446 }) 447 } 448 449 /// Wrap a mutable slice in a Vector of the same length 450 /// 451 /// # arguments 452 /// 453 /// * `slice` - values to wrap in self; length must match 454 /// 455 /// ``` 456 /// # use libceed::prelude::*; 457 /// # fn main() -> libceed::Result<()> { 458 /// # let ceed = libceed::Ceed::default_init(); 459 /// let mut vec = ceed.vector(4)?; 460 /// let mut array = [10., 11., 12., 13.]; 461 /// 462 /// { 463 /// // `wrapper` holds a mutable reference to the wrapped slice 464 /// // that is dropped when `wrapper` goes out of scope 465 /// let wrapper = vec.wrap_slice_mut(&mut array)?; 466 /// for (i, v) in vec.view()?.iter().enumerate() { 467 /// assert_eq!(*v, 10. + i as Scalar, "Slice not set correctly"); 468 /// } 469 /// 470 /// // This line will not compile, as the `wrapper` holds mutable 471 /// // access to the `array` 472 /// // array[0] = 5.0; 473 /// 474 /// // Changes here are reflected in the `array` 475 /// vec.set_value(5.0)?; 476 /// for v in vec.view()?.iter() { 477 /// assert_eq!(*v, 5.0 as Scalar, "Value not set correctly"); 478 /// } 479 /// } 480 /// 481 /// // 'array' remains changed 482 /// for v in array.iter() { 483 /// assert_eq!(*v, 5.0 as Scalar, "Array not mutated correctly"); 484 /// } 485 /// 486 /// // While changes to `vec` no longer affect `array` 487 /// vec.set_value(6.0)?; 488 /// for v in array.iter() { 489 /// assert_eq!(*v, 5.0 as Scalar, "Array mutated without permission"); 490 /// } 491 /// # Ok(()) 492 /// # } 493 /// ``` 494 pub fn wrap_slice_mut<'b>( 495 &mut self, 496 slice: &'b mut [crate::Scalar], 497 ) -> crate::Result<VectorSliceWrapper<'b>> { 498 crate::VectorSliceWrapper::from_vector_and_slice_mut(self, slice) 499 } 500 501 /// Sync the Vector to a specified memtype 502 /// 503 /// # arguments 504 /// 505 /// * `mtype` - Memtype to be synced 506 /// 507 /// ``` 508 /// # use libceed::prelude::*; 509 /// # fn main() -> libceed::Result<()> { 510 /// # let ceed = libceed::Ceed::default_init(); 511 /// let len = 10; 512 /// let mut vec = ceed.vector(len)?; 513 /// 514 /// let val = 42.0; 515 /// vec.set_value(val); 516 /// vec.sync(MemType::Host)?; 517 /// 518 /// for v in vec.view()?.iter() { 519 /// assert_eq!(*v, val, "Value not set correctly"); 520 /// } 521 /// # Ok(()) 522 /// # } 523 /// ``` 524 pub fn sync(&self, mtype: crate::MemType) -> crate::Result<i32> { 525 self.check_error(unsafe { 526 bind_ceed::CeedVectorSyncArray(self.ptr, mtype as bind_ceed::CeedMemType) 527 }) 528 } 529 530 /// Create an immutable view 531 /// 532 /// ``` 533 /// # use libceed::prelude::*; 534 /// # fn main() -> libceed::Result<()> { 535 /// # let ceed = libceed::Ceed::default_init(); 536 /// let vec = ceed.vector_from_slice(&[10., 11., 12., 13.])?; 537 /// 538 /// let v = vec.view()?; 539 /// assert_eq!(v[0..2], [10., 11.]); 540 /// 541 /// // It is valid to have multiple immutable views 542 /// let w = vec.view()?; 543 /// assert_eq!(v[1..], w[1..]); 544 /// # Ok(()) 545 /// # } 546 /// ``` 547 pub fn view(&self) -> crate::Result<VectorView> { 548 VectorView::new(self) 549 } 550 551 /// Create an mutable view 552 /// 553 /// ``` 554 /// # use libceed::prelude::*; 555 /// # fn main() -> libceed::Result<()> { 556 /// # let ceed = libceed::Ceed::default_init(); 557 /// let mut vec = ceed.vector_from_slice(&[10., 11., 12., 13.])?; 558 /// 559 /// { 560 /// let mut v = vec.view_mut()?; 561 /// v[2] = 9.; 562 /// } 563 /// 564 /// let w = vec.view()?; 565 /// assert_eq!(w[2], 9., "View did not mutate data"); 566 /// # Ok(()) 567 /// # } 568 /// ``` 569 pub fn view_mut(&mut self) -> crate::Result<VectorViewMut> { 570 VectorViewMut::new(self) 571 } 572 573 /// Return the norm of a Vector 574 /// 575 /// # arguments 576 /// 577 /// * `ntype` - Norm type One, Two, or Max 578 /// 579 /// ``` 580 /// # use libceed::prelude::*; 581 /// # fn main() -> libceed::Result<()> { 582 /// # let ceed = libceed::Ceed::default_init(); 583 /// let vec = ceed.vector_from_slice(&[1., 2., 3., 4.])?; 584 /// 585 /// let max_norm = vec.norm(NormType::Max)?; 586 /// assert_eq!(max_norm, 4.0, "Incorrect Max norm"); 587 /// 588 /// let l1_norm = vec.norm(NormType::One)?; 589 /// assert_eq!(l1_norm, 10., "Incorrect L1 norm"); 590 /// 591 /// let l2_norm = vec.norm(NormType::Two)?; 592 /// assert!((l2_norm - 5.477) < 1e-3, "Incorrect L2 norm"); 593 /// # Ok(()) 594 /// # } 595 /// ``` 596 pub fn norm(&self, ntype: crate::NormType) -> crate::Result<crate::Scalar> { 597 let mut res: crate::Scalar = 0.0; 598 self.check_error(unsafe { 599 bind_ceed::CeedVectorNorm(self.ptr, ntype as bind_ceed::CeedNormType, &mut res) 600 })?; 601 Ok(res) 602 } 603 604 /// Compute x = alpha x for a Vector 605 /// 606 /// # arguments 607 /// 608 /// * `alpha` - scaling factor 609 /// 610 /// ``` 611 /// # use libceed::prelude::*; 612 /// # fn main() -> libceed::Result<()> { 613 /// # let ceed = libceed::Ceed::default_init(); 614 /// let mut vec = ceed.vector_from_slice(&[0., 1., 2., 3., 4.])?; 615 /// 616 /// vec = vec.scale(-1.0)?; 617 /// for (i, v) in vec.view()?.iter().enumerate() { 618 /// assert_eq!(*v, -(i as Scalar), "Value not set correctly"); 619 /// } 620 /// # Ok(()) 621 /// # } 622 /// ``` 623 #[allow(unused_mut)] 624 pub fn scale(mut self, alpha: crate::Scalar) -> crate::Result<Self> { 625 self.check_error(unsafe { bind_ceed::CeedVectorScale(self.ptr, alpha) })?; 626 Ok(self) 627 } 628 629 /// Compute y = alpha x + y for a pair of Vectors 630 /// 631 /// # arguments 632 /// 633 /// * `alpha` - scaling factor 634 /// * `x` - second vector, must be different than self 635 /// 636 /// ``` 637 /// # use libceed::prelude::*; 638 /// # fn main() -> libceed::Result<()> { 639 /// # let ceed = libceed::Ceed::default_init(); 640 /// let x = ceed.vector_from_slice(&[0., 1., 2., 3., 4.])?; 641 /// let mut y = ceed.vector_from_slice(&[0., 1., 2., 3., 4.])?; 642 /// 643 /// y = y.axpy(-0.5, &x)?; 644 /// for (i, y) in y.view()?.iter().enumerate() { 645 /// assert_eq!(*y, (i as Scalar) / 2.0, "Value not set correctly"); 646 /// } 647 /// # Ok(()) 648 /// # } 649 /// ``` 650 #[allow(unused_mut)] 651 pub fn axpy(mut self, alpha: crate::Scalar, x: &crate::Vector) -> crate::Result<Self> { 652 self.check_error(unsafe { bind_ceed::CeedVectorAXPY(self.ptr, alpha, x.ptr) })?; 653 Ok(self) 654 } 655 656 /// Compute y = alpha x + beta y for a pair of Vectors 657 /// 658 /// # arguments 659 /// 660 /// * `alpha` - first scaling factor 661 /// * `beta` - second scaling factor 662 /// * `x` - second vector, must be different than self 663 /// 664 /// ``` 665 /// # use libceed::prelude::*; 666 /// # fn main() -> libceed::Result<()> { 667 /// # let ceed = libceed::Ceed::default_init(); 668 /// let x = ceed.vector_from_slice(&[0., 1., 2., 3., 4.])?; 669 /// let mut y = ceed.vector_from_slice(&[0., 1., 2., 3., 4.])?; 670 /// 671 /// y = y.axpby(-0.5, 1.0, &x)?; 672 /// for (i, y) in y.view()?.iter().enumerate() { 673 /// assert_eq!(*y, (i as Scalar) * 0.5, "Value not set correctly"); 674 /// } 675 /// # Ok(()) 676 /// # } 677 /// ``` 678 #[allow(unused_mut)] 679 pub fn axpby( 680 mut self, 681 alpha: crate::Scalar, 682 beta: crate::Scalar, 683 x: &crate::Vector, 684 ) -> crate::Result<Self> { 685 self.check_error(unsafe { bind_ceed::CeedVectorAXPBY(self.ptr, alpha, beta, x.ptr) })?; 686 Ok(self) 687 } 688 689 /// Compute the pointwise multiplication w = x .* y for Vectors 690 /// 691 /// # arguments 692 /// 693 /// * `x` - first vector for product 694 /// * `y` - second vector for product 695 /// 696 /// ``` 697 /// # use libceed::prelude::*; 698 /// # fn main() -> libceed::Result<()> { 699 /// # let ceed = libceed::Ceed::default_init(); 700 /// let mut w = ceed.vector_from_slice(&[0., 1., 2., 3., 4.])?; 701 /// let x = ceed.vector_from_slice(&[0., 1., 2., 3., 4.])?; 702 /// let y = ceed.vector_from_slice(&[0., 1., 2., 3., 4.])?; 703 /// 704 /// w = w.pointwise_mult(&x, &y)?; 705 /// for (i, w) in w.view()?.iter().enumerate() { 706 /// assert_eq!(*w, (i as Scalar).powf(2.0), "Value not set correctly"); 707 /// } 708 /// # Ok(()) 709 /// # } 710 /// ``` 711 #[allow(unused_mut)] 712 pub fn pointwise_mult(mut self, x: &crate::Vector, y: &crate::Vector) -> crate::Result<Self> { 713 self.check_error(unsafe { bind_ceed::CeedVectorPointwiseMult(self.ptr, x.ptr, y.ptr) })?; 714 Ok(self) 715 } 716 717 /// Compute the pointwise multiplication w = w .* x for Vectors 718 /// 719 /// # arguments 720 /// 721 /// * `x` - second vector for product 722 /// 723 /// ``` 724 /// # use libceed::prelude::*; 725 /// # fn main() -> libceed::Result<()> { 726 /// # let ceed = libceed::Ceed::default_init(); 727 /// let mut w = ceed.vector_from_slice(&[0., 1., 2., 3., 4.])?; 728 /// let x = ceed.vector_from_slice(&[0., 1., 2., 3., 4.])?; 729 /// 730 /// w = w.pointwise_scale(&x)?; 731 /// for (i, w) in w.view()?.iter().enumerate() { 732 /// assert_eq!(*w, (i as Scalar).powf(2.0), "Value not set correctly"); 733 /// } 734 /// # Ok(()) 735 /// # } 736 /// ``` 737 #[allow(unused_mut)] 738 pub fn pointwise_scale(mut self, x: &crate::Vector) -> crate::Result<Self> { 739 self.check_error(unsafe { bind_ceed::CeedVectorPointwiseMult(self.ptr, self.ptr, x.ptr) })?; 740 Ok(self) 741 } 742 743 /// Compute the pointwise multiplication w = w .* w for a Vector 744 /// 745 /// ``` 746 /// # use libceed::prelude::*; 747 /// # fn main() -> libceed::Result<()> { 748 /// # let ceed = libceed::Ceed::default_init(); 749 /// let mut w = ceed.vector_from_slice(&[0., 1., 2., 3., 4.])?; 750 /// 751 /// w = w.pointwise_square()?; 752 /// for (i, w) in w.view()?.iter().enumerate() { 753 /// assert_eq!(*w, (i as Scalar).powf(2.0), "Value not set correctly"); 754 /// } 755 /// # Ok(()) 756 /// # } 757 /// ``` 758 #[allow(unused_mut)] 759 pub fn pointwise_square(mut self) -> crate::Result<Self> { 760 self.check_error(unsafe { 761 bind_ceed::CeedVectorPointwiseMult(self.ptr, self.ptr, self.ptr) 762 })?; 763 Ok(self) 764 } 765 } 766 767 // ----------------------------------------------------------------------------- 768 // Vector Viewer 769 // ----------------------------------------------------------------------------- 770 /// A (host) view of a Vector with Deref to slice. We can't make 771 /// Vector itself Deref to slice because we can't handle the drop to 772 /// call bind_ceed::CeedVectorRestoreArrayRead(). 773 #[derive(Debug)] 774 pub struct VectorView<'a> { 775 vec: &'a Vector<'a>, 776 array: *const crate::Scalar, 777 } 778 779 impl<'a> VectorView<'a> { 780 /// Construct a VectorView from a Vector reference 781 fn new(vec: &'a Vector) -> crate::Result<Self> { 782 let mut array = std::ptr::null(); 783 vec.check_error(unsafe { 784 bind_ceed::CeedVectorGetArrayRead( 785 vec.ptr, 786 crate::MemType::Host as bind_ceed::CeedMemType, 787 &mut array, 788 ) 789 })?; 790 Ok(Self { 791 vec: vec, 792 array: array, 793 }) 794 } 795 } 796 797 // Destructor 798 impl<'a> Drop for VectorView<'a> { 799 fn drop(&mut self) { 800 unsafe { 801 bind_ceed::CeedVectorRestoreArrayRead(self.vec.ptr, &mut self.array); 802 } 803 } 804 } 805 806 // Data access 807 impl<'a> Deref for VectorView<'a> { 808 type Target = [crate::Scalar]; 809 fn deref(&self) -> &[crate::Scalar] { 810 unsafe { std::slice::from_raw_parts(self.array, self.vec.len()) } 811 } 812 } 813 814 // Viewing 815 impl<'a> fmt::Display for VectorView<'a> { 816 fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result { 817 write!(f, "VectorView({:?})", self.deref()) 818 } 819 } 820 821 // ----------------------------------------------------------------------------- 822 // Vector Viewer Mutable 823 // ----------------------------------------------------------------------------- 824 /// A mutable (host) view of a Vector with Deref to slice. 825 #[derive(Debug)] 826 pub struct VectorViewMut<'a> { 827 vec: &'a Vector<'a>, 828 array: *mut crate::Scalar, 829 } 830 831 impl<'a> VectorViewMut<'a> { 832 /// Construct a VectorViewMut from a Vector reference 833 fn new(vec: &'a mut Vector) -> crate::Result<Self> { 834 let mut ptr = std::ptr::null_mut(); 835 vec.check_error(unsafe { 836 bind_ceed::CeedVectorGetArray( 837 vec.ptr, 838 crate::MemType::Host as bind_ceed::CeedMemType, 839 &mut ptr, 840 ) 841 })?; 842 Ok(Self { 843 vec: vec, 844 array: ptr, 845 }) 846 } 847 } 848 849 // Destructor 850 impl<'a> Drop for VectorViewMut<'a> { 851 fn drop(&mut self) { 852 unsafe { 853 bind_ceed::CeedVectorRestoreArray(self.vec.ptr, &mut self.array); 854 } 855 } 856 } 857 858 // Data access 859 impl<'a> Deref for VectorViewMut<'a> { 860 type Target = [crate::Scalar]; 861 fn deref(&self) -> &[crate::Scalar] { 862 unsafe { std::slice::from_raw_parts(self.array, self.vec.len()) } 863 } 864 } 865 866 // Mutable data access 867 impl<'a> DerefMut for VectorViewMut<'a> { 868 fn deref_mut(&mut self) -> &mut [crate::Scalar] { 869 unsafe { std::slice::from_raw_parts_mut(self.array, self.vec.len()) } 870 } 871 } 872 873 // Viewing 874 impl<'a> fmt::Display for VectorViewMut<'a> { 875 fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result { 876 write!(f, "VectorViewMut({:?})", self.deref()) 877 } 878 } 879 880 // ----------------------------------------------------------------------------- 881