19df49d7eSJed Brown // Copyright (c) 2017, Lawrence Livermore National Security, LLC. Produced at 29df49d7eSJed Brown // the Lawrence Livermore National Laboratory. LLNL-CODE-734707. All Rights 39df49d7eSJed Brown // reserved. See files LICENSE and NOTICE for details. 49df49d7eSJed Brown // 59df49d7eSJed Brown // This file is part of CEED, a collection of benchmarks, miniapps, software 69df49d7eSJed Brown // libraries and APIs for efficient high-order finite element and spectral 79df49d7eSJed Brown // element discretizations for exascale applications. For more information and 89df49d7eSJed Brown // source code availability see http://github.com/ceed. 99df49d7eSJed Brown // 109df49d7eSJed Brown // The CEED research is supported by the Exascale Computing Project 17-SC-20-SC, 119df49d7eSJed Brown // a collaborative effort of two U.S. Department of Energy organizations (Office 129df49d7eSJed Brown // of Science and the National Nuclear Security Administration) responsible for 139df49d7eSJed Brown // the planning and preparation of a capable exascale ecosystem, including 149df49d7eSJed Brown // software, applications, hardware, advanced system engineering and early 159df49d7eSJed Brown // testbed platforms, in support of the nation's exascale computing imperative 169df49d7eSJed Brown 179df49d7eSJed Brown //! A Ceed ElemRestriction decomposes elements and groups the degrees of freedom 189df49d7eSJed Brown //! (dofs) according to the different elements they belong to. 199df49d7eSJed Brown 209df49d7eSJed Brown use crate::prelude::*; 219df49d7eSJed Brown 229df49d7eSJed Brown // ----------------------------------------------------------------------------- 239df49d7eSJed Brown // CeedElemRestriction option 249df49d7eSJed Brown // ----------------------------------------------------------------------------- 259df49d7eSJed Brown #[derive(Clone, Copy)] 269df49d7eSJed Brown pub enum ElemRestrictionOpt<'a> { 279df49d7eSJed Brown Some(&'a ElemRestriction<'a>), 289df49d7eSJed Brown None, 299df49d7eSJed Brown } 309df49d7eSJed Brown /// Construct a ElemRestrictionOpt reference from a ElemRestriction reference 319df49d7eSJed Brown impl<'a> From<&'a ElemRestriction<'_>> for ElemRestrictionOpt<'a> { 329df49d7eSJed Brown fn from(restr: &'a ElemRestriction) -> Self { 339df49d7eSJed Brown debug_assert!(restr.ptr != unsafe { bind_ceed::CEED_ELEMRESTRICTION_NONE }); 349df49d7eSJed Brown Self::Some(restr) 359df49d7eSJed Brown } 369df49d7eSJed Brown } 379df49d7eSJed Brown impl<'a> ElemRestrictionOpt<'a> { 389df49d7eSJed Brown /// Transform a Rust libCEED ElemRestrictionOpt into C libCEED 399df49d7eSJed Brown /// CeedElemRestriction 409df49d7eSJed Brown pub(crate) fn to_raw(self) -> bind_ceed::CeedElemRestriction { 419df49d7eSJed Brown match self { 429df49d7eSJed Brown Self::Some(restr) => restr.ptr, 439df49d7eSJed Brown Self::None => unsafe { bind_ceed::CEED_ELEMRESTRICTION_NONE }, 449df49d7eSJed Brown } 459df49d7eSJed Brown } 469df49d7eSJed Brown } 479df49d7eSJed Brown 489df49d7eSJed Brown // ----------------------------------------------------------------------------- 499df49d7eSJed Brown // CeedElemRestriction context wrapper 509df49d7eSJed Brown // ----------------------------------------------------------------------------- 519df49d7eSJed Brown pub struct ElemRestriction<'a> { 529df49d7eSJed Brown ceed: &'a crate::Ceed, 539df49d7eSJed Brown pub(crate) ptr: bind_ceed::CeedElemRestriction, 549df49d7eSJed Brown } 559df49d7eSJed Brown 569df49d7eSJed Brown // ----------------------------------------------------------------------------- 579df49d7eSJed Brown // Destructor 589df49d7eSJed Brown // ----------------------------------------------------------------------------- 599df49d7eSJed Brown impl<'a> Drop for ElemRestriction<'a> { 609df49d7eSJed Brown fn drop(&mut self) { 619df49d7eSJed Brown unsafe { 629df49d7eSJed Brown if self.ptr != bind_ceed::CEED_ELEMRESTRICTION_NONE { 639df49d7eSJed Brown bind_ceed::CeedElemRestrictionDestroy(&mut self.ptr); 649df49d7eSJed Brown } 659df49d7eSJed Brown } 669df49d7eSJed Brown } 679df49d7eSJed Brown } 689df49d7eSJed Brown 699df49d7eSJed Brown // ----------------------------------------------------------------------------- 709df49d7eSJed Brown // Display 719df49d7eSJed Brown // ----------------------------------------------------------------------------- 729df49d7eSJed Brown impl<'a> fmt::Display for ElemRestriction<'a> { 739df49d7eSJed Brown /// View an ElemRestriction 749df49d7eSJed Brown /// 759df49d7eSJed Brown /// ``` 769df49d7eSJed Brown /// # use libceed::prelude::*; 779df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init(); 789df49d7eSJed Brown /// let nelem = 3; 799df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * nelem]; 809df49d7eSJed Brown /// for i in 0..nelem { 819df49d7eSJed Brown /// ind[2 * i + 0] = i as i32; 829df49d7eSJed Brown /// ind[2 * i + 1] = (i + 1) as i32; 839df49d7eSJed Brown /// } 849df49d7eSJed Brown /// let r = ceed 859df49d7eSJed Brown /// .elem_restriction(nelem, 2, 1, 1, nelem + 1, MemType::Host, &ind) 869df49d7eSJed Brown /// .unwrap(); 879df49d7eSJed Brown /// println!("{}", r); 889df49d7eSJed Brown /// ``` 899df49d7eSJed Brown fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result { 909df49d7eSJed Brown let mut ptr = std::ptr::null_mut(); 919df49d7eSJed Brown let mut sizeloc = crate::MAX_BUFFER_LENGTH; 929df49d7eSJed Brown let cstring = unsafe { 939df49d7eSJed Brown let file = bind_ceed::open_memstream(&mut ptr, &mut sizeloc); 949df49d7eSJed Brown bind_ceed::CeedElemRestrictionView(self.ptr, file); 959df49d7eSJed Brown bind_ceed::fclose(file); 969df49d7eSJed Brown CString::from_raw(ptr) 979df49d7eSJed Brown }; 989df49d7eSJed Brown cstring.to_string_lossy().fmt(f) 999df49d7eSJed Brown } 1009df49d7eSJed Brown } 1019df49d7eSJed Brown 1029df49d7eSJed Brown // ----------------------------------------------------------------------------- 1039df49d7eSJed Brown // Implementations 1049df49d7eSJed Brown // ----------------------------------------------------------------------------- 1059df49d7eSJed Brown impl<'a> ElemRestriction<'a> { 1069df49d7eSJed Brown // Constructors 1079df49d7eSJed Brown pub fn create( 1089df49d7eSJed Brown ceed: &'a crate::Ceed, 1099df49d7eSJed Brown nelem: usize, 1109df49d7eSJed Brown elemsize: usize, 1119df49d7eSJed Brown ncomp: usize, 1129df49d7eSJed Brown compstride: usize, 1139df49d7eSJed Brown lsize: usize, 1149df49d7eSJed Brown mtype: crate::MemType, 1159df49d7eSJed Brown offsets: &[i32], 1169df49d7eSJed Brown ) -> crate::Result<Self> { 1179df49d7eSJed Brown let mut ptr = std::ptr::null_mut(); 1189df49d7eSJed Brown let (nelem, elemsize, ncomp, compstride, lsize, mtype) = ( 1199df49d7eSJed Brown i32::try_from(nelem).unwrap(), 1209df49d7eSJed Brown i32::try_from(elemsize).unwrap(), 1219df49d7eSJed Brown i32::try_from(ncomp).unwrap(), 1229df49d7eSJed Brown i32::try_from(compstride).unwrap(), 1239df49d7eSJed Brown i32::try_from(lsize).unwrap(), 1249df49d7eSJed Brown mtype as bind_ceed::CeedMemType, 1259df49d7eSJed Brown ); 1269df49d7eSJed Brown let ierr = unsafe { 1279df49d7eSJed Brown bind_ceed::CeedElemRestrictionCreate( 1289df49d7eSJed Brown ceed.ptr, 1299df49d7eSJed Brown nelem, 1309df49d7eSJed Brown elemsize, 1319df49d7eSJed Brown ncomp, 1329df49d7eSJed Brown compstride, 1339df49d7eSJed Brown lsize, 1349df49d7eSJed Brown mtype, 1359df49d7eSJed Brown crate::CopyMode::CopyValues as bind_ceed::CeedCopyMode, 1369df49d7eSJed Brown offsets.as_ptr(), 1379df49d7eSJed Brown &mut ptr, 1389df49d7eSJed Brown ) 1399df49d7eSJed Brown }; 1409df49d7eSJed Brown ceed.check_error(ierr)?; 1419df49d7eSJed Brown Ok(Self { ceed, ptr }) 1429df49d7eSJed Brown } 1439df49d7eSJed Brown 1449df49d7eSJed Brown pub fn create_strided( 1459df49d7eSJed Brown ceed: &'a crate::Ceed, 1469df49d7eSJed Brown nelem: usize, 1479df49d7eSJed Brown elemsize: usize, 1489df49d7eSJed Brown ncomp: usize, 1499df49d7eSJed Brown lsize: usize, 1509df49d7eSJed Brown strides: [i32; 3], 1519df49d7eSJed Brown ) -> crate::Result<Self> { 1529df49d7eSJed Brown let mut ptr = std::ptr::null_mut(); 1539df49d7eSJed Brown let (nelem, elemsize, ncomp, lsize) = ( 1549df49d7eSJed Brown i32::try_from(nelem).unwrap(), 1559df49d7eSJed Brown i32::try_from(elemsize).unwrap(), 1569df49d7eSJed Brown i32::try_from(ncomp).unwrap(), 1579df49d7eSJed Brown i32::try_from(lsize).unwrap(), 1589df49d7eSJed Brown ); 1599df49d7eSJed Brown let ierr = unsafe { 1609df49d7eSJed Brown bind_ceed::CeedElemRestrictionCreateStrided( 1619df49d7eSJed Brown ceed.ptr, 1629df49d7eSJed Brown nelem, 1639df49d7eSJed Brown elemsize, 1649df49d7eSJed Brown ncomp, 1659df49d7eSJed Brown lsize, 1669df49d7eSJed Brown strides.as_ptr(), 1679df49d7eSJed Brown &mut ptr, 1689df49d7eSJed Brown ) 1699df49d7eSJed Brown }; 1709df49d7eSJed Brown ceed.check_error(ierr)?; 1719df49d7eSJed Brown Ok(Self { ceed, ptr }) 1729df49d7eSJed Brown } 1739df49d7eSJed Brown 1749df49d7eSJed Brown /// Create an Lvector for an ElemRestriction 1759df49d7eSJed Brown /// 1769df49d7eSJed Brown /// ``` 1779df49d7eSJed Brown /// # use libceed::prelude::*; 1789df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init(); 1799df49d7eSJed Brown /// let nelem = 3; 1809df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * nelem]; 1819df49d7eSJed Brown /// for i in 0..nelem { 1829df49d7eSJed Brown /// ind[2 * i + 0] = i as i32; 1839df49d7eSJed Brown /// ind[2 * i + 1] = (i + 1) as i32; 1849df49d7eSJed Brown /// } 1859df49d7eSJed Brown /// let r = ceed 1869df49d7eSJed Brown /// .elem_restriction(nelem, 2, 1, 1, nelem + 1, MemType::Host, &ind) 1879df49d7eSJed Brown /// .unwrap(); 1889df49d7eSJed Brown /// 1899df49d7eSJed Brown /// let lvector = r.create_lvector().unwrap(); 1909df49d7eSJed Brown /// 1919df49d7eSJed Brown /// assert_eq!(lvector.length(), nelem + 1, "Incorrect Lvector size"); 1929df49d7eSJed Brown /// ``` 1939df49d7eSJed Brown pub fn create_lvector(&self) -> crate::Result<Vector> { 1949df49d7eSJed Brown let mut ptr_lvector = std::ptr::null_mut(); 1959df49d7eSJed Brown let null = std::ptr::null_mut() as *mut _; 1969df49d7eSJed Brown let ierr = 1979df49d7eSJed Brown unsafe { bind_ceed::CeedElemRestrictionCreateVector(self.ptr, &mut ptr_lvector, null) }; 1989df49d7eSJed Brown self.ceed.check_error(ierr)?; 1999df49d7eSJed Brown Vector::from_raw(self.ceed, ptr_lvector) 2009df49d7eSJed Brown } 2019df49d7eSJed Brown 2029df49d7eSJed Brown /// Create an Evector for an ElemRestriction 2039df49d7eSJed Brown /// 2049df49d7eSJed Brown /// ``` 2059df49d7eSJed Brown /// # use libceed::prelude::*; 2069df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init(); 2079df49d7eSJed Brown /// let nelem = 3; 2089df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * nelem]; 2099df49d7eSJed Brown /// for i in 0..nelem { 2109df49d7eSJed Brown /// ind[2 * i + 0] = i as i32; 2119df49d7eSJed Brown /// ind[2 * i + 1] = (i + 1) as i32; 2129df49d7eSJed Brown /// } 2139df49d7eSJed Brown /// let r = ceed 2149df49d7eSJed Brown /// .elem_restriction(nelem, 2, 1, 1, nelem + 1, MemType::Host, &ind) 2159df49d7eSJed Brown /// .unwrap(); 2169df49d7eSJed Brown /// 2179df49d7eSJed Brown /// let evector = r.create_evector().unwrap(); 2189df49d7eSJed Brown /// 2199df49d7eSJed Brown /// assert_eq!(evector.length(), nelem * 2, "Incorrect Evector size"); 2209df49d7eSJed Brown /// ``` 2219df49d7eSJed Brown pub fn create_evector(&self) -> crate::Result<Vector> { 2229df49d7eSJed Brown let mut ptr_evector = std::ptr::null_mut(); 2239df49d7eSJed Brown let null = std::ptr::null_mut() as *mut _; 2249df49d7eSJed Brown let ierr = 2259df49d7eSJed Brown unsafe { bind_ceed::CeedElemRestrictionCreateVector(self.ptr, null, &mut ptr_evector) }; 2269df49d7eSJed Brown self.ceed.check_error(ierr)?; 2279df49d7eSJed Brown Vector::from_raw(self.ceed, ptr_evector) 2289df49d7eSJed Brown } 2299df49d7eSJed Brown 2309df49d7eSJed Brown /// Create Vectors for an ElemRestriction 2319df49d7eSJed Brown /// 2329df49d7eSJed Brown /// ``` 2339df49d7eSJed Brown /// # use libceed::prelude::*; 2349df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init(); 2359df49d7eSJed Brown /// let nelem = 3; 2369df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * nelem]; 2379df49d7eSJed Brown /// for i in 0..nelem { 2389df49d7eSJed Brown /// ind[2 * i + 0] = i as i32; 2399df49d7eSJed Brown /// ind[2 * i + 1] = (i + 1) as i32; 2409df49d7eSJed Brown /// } 2419df49d7eSJed Brown /// let r = ceed 2429df49d7eSJed Brown /// .elem_restriction(nelem, 2, 1, 1, nelem + 1, MemType::Host, &ind) 2439df49d7eSJed Brown /// .unwrap(); 2449df49d7eSJed Brown /// 2459df49d7eSJed Brown /// let (lvector, evector) = r.create_vectors().unwrap(); 2469df49d7eSJed Brown /// 2479df49d7eSJed Brown /// assert_eq!(lvector.length(), nelem + 1, "Incorrect Lvector size"); 2489df49d7eSJed Brown /// assert_eq!(evector.length(), nelem * 2, "Incorrect Evector size"); 2499df49d7eSJed Brown /// ``` 2509df49d7eSJed Brown pub fn create_vectors(&self) -> crate::Result<(Vector, Vector)> { 2519df49d7eSJed Brown let mut ptr_lvector = std::ptr::null_mut(); 2529df49d7eSJed Brown let mut ptr_evector = std::ptr::null_mut(); 2539df49d7eSJed Brown let ierr = unsafe { 2549df49d7eSJed Brown bind_ceed::CeedElemRestrictionCreateVector(self.ptr, &mut ptr_lvector, &mut ptr_evector) 2559df49d7eSJed Brown }; 2569df49d7eSJed Brown self.ceed.check_error(ierr)?; 2579df49d7eSJed Brown let lvector = Vector::from_raw(self.ceed, ptr_lvector)?; 2589df49d7eSJed Brown let evector = Vector::from_raw(self.ceed, ptr_evector)?; 2599df49d7eSJed Brown Ok((lvector, evector)) 2609df49d7eSJed Brown } 2619df49d7eSJed Brown 2629df49d7eSJed Brown /// Restrict an Lvector to an Evector or apply its transpose 2639df49d7eSJed Brown /// 2649df49d7eSJed Brown /// # arguments 2659df49d7eSJed Brown /// 2669df49d7eSJed Brown /// * `tmode` - Apply restriction or transpose 2679df49d7eSJed Brown /// * `u` - Input vector (of size `lsize` when `TransposeMode::NoTranspose`) 2689df49d7eSJed Brown /// * `ru` - Output vector (of shape `[nelem * elemsize]` when 2699df49d7eSJed Brown /// `TransposeMode::NoTranspose`). Ordering of the Evector is 2709df49d7eSJed Brown /// decided by the backend. 2719df49d7eSJed Brown /// 2729df49d7eSJed Brown /// ``` 2739df49d7eSJed Brown /// # use libceed::prelude::*; 2749df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init(); 2759df49d7eSJed Brown /// let nelem = 3; 2769df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * nelem]; 2779df49d7eSJed Brown /// for i in 0..nelem { 2789df49d7eSJed Brown /// ind[2 * i + 0] = i as i32; 2799df49d7eSJed Brown /// ind[2 * i + 1] = (i + 1) as i32; 2809df49d7eSJed Brown /// } 2819df49d7eSJed Brown /// let r = ceed 2829df49d7eSJed Brown /// .elem_restriction(nelem, 2, 1, 1, nelem + 1, MemType::Host, &ind) 2839df49d7eSJed Brown /// .unwrap(); 2849df49d7eSJed Brown /// 2859df49d7eSJed Brown /// let x = ceed.vector_from_slice(&[0., 1., 2., 3.]).unwrap(); 2869df49d7eSJed Brown /// let mut y = ceed.vector(nelem * 2).unwrap(); 2879df49d7eSJed Brown /// y.set_value(0.0); 2889df49d7eSJed Brown /// 2899df49d7eSJed Brown /// r.apply(TransposeMode::NoTranspose, &x, &mut y).unwrap(); 2909df49d7eSJed Brown /// 2919df49d7eSJed Brown /// y.view().iter().enumerate().for_each(|(i, arr)| { 2929df49d7eSJed Brown /// assert_eq!( 2939df49d7eSJed Brown /// *arr, 294*80a9ef05SNatalie Beams /// ((i + 1) / 2) as Scalar, 2959df49d7eSJed Brown /// "Incorrect value in restricted vector" 2969df49d7eSJed Brown /// ); 2979df49d7eSJed Brown /// }); 2989df49d7eSJed Brown /// ``` 2999df49d7eSJed Brown pub fn apply(&self, tmode: TransposeMode, u: &Vector, ru: &mut Vector) -> crate::Result<i32> { 3009df49d7eSJed Brown let tmode = tmode as bind_ceed::CeedTransposeMode; 3019df49d7eSJed Brown let ierr = unsafe { 3029df49d7eSJed Brown bind_ceed::CeedElemRestrictionApply( 3039df49d7eSJed Brown self.ptr, 3049df49d7eSJed Brown tmode, 3059df49d7eSJed Brown u.ptr, 3069df49d7eSJed Brown ru.ptr, 3079df49d7eSJed Brown bind_ceed::CEED_REQUEST_IMMEDIATE, 3089df49d7eSJed Brown ) 3099df49d7eSJed Brown }; 3109df49d7eSJed Brown self.ceed.check_error(ierr) 3119df49d7eSJed Brown } 3129df49d7eSJed Brown 3139df49d7eSJed Brown /// Returns the Lvector component stride 3149df49d7eSJed Brown /// 3159df49d7eSJed Brown /// ``` 3169df49d7eSJed Brown /// # use libceed::prelude::*; 3179df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init(); 3189df49d7eSJed Brown /// let nelem = 3; 3199df49d7eSJed Brown /// let compstride = 1; 3209df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * nelem]; 3219df49d7eSJed Brown /// for i in 0..nelem { 3229df49d7eSJed Brown /// ind[2 * i + 0] = i as i32; 3239df49d7eSJed Brown /// ind[2 * i + 1] = (i + 1) as i32; 3249df49d7eSJed Brown /// } 3259df49d7eSJed Brown /// let r = ceed 3269df49d7eSJed Brown /// .elem_restriction(nelem, 2, 1, compstride, nelem + 1, MemType::Host, &ind) 3279df49d7eSJed Brown /// .unwrap(); 3289df49d7eSJed Brown /// 3299df49d7eSJed Brown /// let c = r.comp_stride(); 3309df49d7eSJed Brown /// assert_eq!(c, compstride, "Incorrect component stride"); 3319df49d7eSJed Brown /// ``` 3329df49d7eSJed Brown pub fn comp_stride(&self) -> usize { 3339df49d7eSJed Brown let mut compstride = 0; 3349df49d7eSJed Brown unsafe { bind_ceed::CeedElemRestrictionGetCompStride(self.ptr, &mut compstride) }; 3359df49d7eSJed Brown usize::try_from(compstride).unwrap() 3369df49d7eSJed Brown } 3379df49d7eSJed Brown 3389df49d7eSJed Brown /// Returns the total number of elements in the range of a ElemRestriction 3399df49d7eSJed Brown /// 3409df49d7eSJed Brown /// ``` 3419df49d7eSJed Brown /// # use libceed::prelude::*; 3429df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init(); 3439df49d7eSJed Brown /// let nelem = 3; 3449df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * nelem]; 3459df49d7eSJed Brown /// for i in 0..nelem { 3469df49d7eSJed Brown /// ind[2 * i + 0] = i as i32; 3479df49d7eSJed Brown /// ind[2 * i + 1] = (i + 1) as i32; 3489df49d7eSJed Brown /// } 3499df49d7eSJed Brown /// let r = ceed 3509df49d7eSJed Brown /// .elem_restriction(nelem, 2, 1, 1, nelem + 1, MemType::Host, &ind) 3519df49d7eSJed Brown /// .unwrap(); 3529df49d7eSJed Brown /// 3539df49d7eSJed Brown /// let n = r.num_elements(); 3549df49d7eSJed Brown /// assert_eq!(n, nelem, "Incorrect number of elements"); 3559df49d7eSJed Brown /// ``` 3569df49d7eSJed Brown pub fn num_elements(&self) -> usize { 3579df49d7eSJed Brown let mut numelem = 0; 3589df49d7eSJed Brown unsafe { bind_ceed::CeedElemRestrictionGetNumElements(self.ptr, &mut numelem) }; 3599df49d7eSJed Brown usize::try_from(numelem).unwrap() 3609df49d7eSJed Brown } 3619df49d7eSJed Brown 3629df49d7eSJed Brown /// Returns the size of elements in the ElemRestriction 3639df49d7eSJed Brown /// 3649df49d7eSJed Brown /// ``` 3659df49d7eSJed Brown /// # use libceed::prelude::*; 3669df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init(); 3679df49d7eSJed Brown /// let nelem = 3; 3689df49d7eSJed Brown /// let elem_size = 2; 3699df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * nelem]; 3709df49d7eSJed Brown /// for i in 0..nelem { 3719df49d7eSJed Brown /// ind[2 * i + 0] = i as i32; 3729df49d7eSJed Brown /// ind[2 * i + 1] = (i + 1) as i32; 3739df49d7eSJed Brown /// } 3749df49d7eSJed Brown /// let r = ceed 3759df49d7eSJed Brown /// .elem_restriction(nelem, elem_size, 1, 1, nelem + 1, MemType::Host, &ind) 3769df49d7eSJed Brown /// .unwrap(); 3779df49d7eSJed Brown /// 3789df49d7eSJed Brown /// let e = r.elem_size(); 3799df49d7eSJed Brown /// assert_eq!(e, elem_size, "Incorrect element size"); 3809df49d7eSJed Brown /// ``` 3819df49d7eSJed Brown pub fn elem_size(&self) -> usize { 3829df49d7eSJed Brown let mut elemsize = 0; 3839df49d7eSJed Brown unsafe { bind_ceed::CeedElemRestrictionGetElementSize(self.ptr, &mut elemsize) }; 3849df49d7eSJed Brown usize::try_from(elemsize).unwrap() 3859df49d7eSJed Brown } 3869df49d7eSJed Brown 3879df49d7eSJed Brown /// Returns the size of the Lvector for an ElemRestriction 3889df49d7eSJed Brown /// 3899df49d7eSJed Brown /// ``` 3909df49d7eSJed Brown /// # use libceed::prelude::*; 3919df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init(); 3929df49d7eSJed Brown /// let nelem = 3; 3939df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * nelem]; 3949df49d7eSJed Brown /// for i in 0..nelem { 3959df49d7eSJed Brown /// ind[2 * i + 0] = i as i32; 3969df49d7eSJed Brown /// ind[2 * i + 1] = (i + 1) as i32; 3979df49d7eSJed Brown /// } 3989df49d7eSJed Brown /// let r = ceed 3999df49d7eSJed Brown /// .elem_restriction(nelem, 2, 1, 1, nelem + 1, MemType::Host, &ind) 4009df49d7eSJed Brown /// .unwrap(); 4019df49d7eSJed Brown /// 4029df49d7eSJed Brown /// let lsize = r.lvector_size(); 4039df49d7eSJed Brown /// assert_eq!(lsize, nelem + 1); 4049df49d7eSJed Brown /// ``` 4059df49d7eSJed Brown pub fn lvector_size(&self) -> usize { 4069df49d7eSJed Brown let mut lsize = 0; 4079df49d7eSJed Brown unsafe { bind_ceed::CeedElemRestrictionGetLVectorSize(self.ptr, &mut lsize) }; 4089df49d7eSJed Brown usize::try_from(lsize).unwrap() 4099df49d7eSJed Brown } 4109df49d7eSJed Brown 4119df49d7eSJed Brown /// Returns the number of components in the elements of an ElemRestriction 4129df49d7eSJed Brown /// 4139df49d7eSJed Brown /// ``` 4149df49d7eSJed Brown /// # use libceed::prelude::*; 4159df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init(); 4169df49d7eSJed Brown /// let nelem = 3; 4179df49d7eSJed Brown /// let ncomp = 42; 4189df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * nelem]; 4199df49d7eSJed Brown /// for i in 0..nelem { 4209df49d7eSJed Brown /// ind[2 * i + 0] = i as i32; 4219df49d7eSJed Brown /// ind[2 * i + 1] = (i + 1) as i32; 4229df49d7eSJed Brown /// } 4239df49d7eSJed Brown /// let r = ceed 4249df49d7eSJed Brown /// .elem_restriction(nelem, 2, 42, 1, ncomp * (nelem + 1), MemType::Host, &ind) 4259df49d7eSJed Brown /// .unwrap(); 4269df49d7eSJed Brown /// 4279df49d7eSJed Brown /// let n = r.num_components(); 4289df49d7eSJed Brown /// assert_eq!(n, ncomp, "Incorrect number of components"); 4299df49d7eSJed Brown /// ``` 4309df49d7eSJed Brown pub fn num_components(&self) -> usize { 4319df49d7eSJed Brown let mut ncomp = 0; 4329df49d7eSJed Brown unsafe { bind_ceed::CeedElemRestrictionGetNumComponents(self.ptr, &mut ncomp) }; 4339df49d7eSJed Brown usize::try_from(ncomp).unwrap() 4349df49d7eSJed Brown } 4359df49d7eSJed Brown 4369df49d7eSJed Brown /// Returns the multiplicity of nodes in an ElemRestriction 4379df49d7eSJed Brown /// 4389df49d7eSJed Brown /// ``` 4399df49d7eSJed Brown /// # use libceed::prelude::*; 4409df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init(); 4419df49d7eSJed Brown /// let nelem = 3; 4429df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * nelem]; 4439df49d7eSJed Brown /// for i in 0..nelem { 4449df49d7eSJed Brown /// ind[2 * i + 0] = i as i32; 4459df49d7eSJed Brown /// ind[2 * i + 1] = (i + 1) as i32; 4469df49d7eSJed Brown /// } 4479df49d7eSJed Brown /// let r = ceed 4489df49d7eSJed Brown /// .elem_restriction(nelem, 2, 1, 1, nelem + 1, MemType::Host, &ind) 4499df49d7eSJed Brown /// .unwrap(); 4509df49d7eSJed Brown /// 4519df49d7eSJed Brown /// let mut mult = ceed.vector(nelem + 1).unwrap(); 4529df49d7eSJed Brown /// mult.set_value(0.0); 4539df49d7eSJed Brown /// 4549df49d7eSJed Brown /// r.multiplicity(&mut mult).unwrap(); 4559df49d7eSJed Brown /// 4569df49d7eSJed Brown /// mult.view().iter().enumerate().for_each(|(i, arr)| { 4579df49d7eSJed Brown /// assert_eq!( 4589df49d7eSJed Brown /// if (i == 0 || i == nelem) { 1. } else { 2. }, 4599df49d7eSJed Brown /// *arr, 4609df49d7eSJed Brown /// "Incorrect multiplicity array" 4619df49d7eSJed Brown /// ); 4629df49d7eSJed Brown /// }); 4639df49d7eSJed Brown /// ``` 4649df49d7eSJed Brown pub fn multiplicity(&self, mult: &mut Vector) -> crate::Result<i32> { 4659df49d7eSJed Brown let ierr = unsafe { bind_ceed::CeedElemRestrictionGetMultiplicity(self.ptr, mult.ptr) }; 4669df49d7eSJed Brown self.ceed.check_error(ierr) 4679df49d7eSJed Brown } 4689df49d7eSJed Brown } 4699df49d7eSJed Brown 4709df49d7eSJed Brown // ----------------------------------------------------------------------------- 471