xref: /libCEED/rust/libceed/src/operator.rs (revision 89d15d5f0023c68bcd2cd21cc416c4f362973c3a)
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 Operator defines the finite/spectral element operator associated to a
189df49d7eSJed Brown //! Ceed QFunction. A Ceed Operator connects Ceed ElemRestrictions,
199df49d7eSJed Brown //! Ceed Bases, and Ceed QFunctions.
209df49d7eSJed Brown 
219df49d7eSJed Brown use crate::prelude::*;
229df49d7eSJed Brown 
239df49d7eSJed Brown // -----------------------------------------------------------------------------
2408778c6fSJeremy L Thompson // CeedOperator Field context wrapper
2508778c6fSJeremy L Thompson // -----------------------------------------------------------------------------
2608778c6fSJeremy L Thompson #[derive(Debug)]
2708778c6fSJeremy L Thompson pub struct OperatorField<'a> {
2808778c6fSJeremy L Thompson     pub(crate) ptr: bind_ceed::CeedOperatorField,
2908778c6fSJeremy L Thompson     _lifeline: PhantomData<&'a ()>,
3008778c6fSJeremy L Thompson }
3108778c6fSJeremy L Thompson 
3208778c6fSJeremy L Thompson // -----------------------------------------------------------------------------
3308778c6fSJeremy L Thompson // Implementations
3408778c6fSJeremy L Thompson // -----------------------------------------------------------------------------
3508778c6fSJeremy L Thompson impl<'a> OperatorField<'a> {
3608778c6fSJeremy L Thompson     /// Get the name of an OperatorField
3708778c6fSJeremy L Thompson     ///
3808778c6fSJeremy L Thompson     /// ```
3908778c6fSJeremy L Thompson     /// # use libceed::prelude::*;
40*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
4108778c6fSJeremy L Thompson     /// # let ceed = libceed::Ceed::default_init();
4208778c6fSJeremy L Thompson     /// let qf = ceed.q_function_interior_by_name("Mass1DBuild")?;
4308778c6fSJeremy L Thompson     ///
4408778c6fSJeremy L Thompson     /// // Operator field arguments
4508778c6fSJeremy L Thompson     /// let ne = 3;
4608778c6fSJeremy L Thompson     /// let q = 4 as usize;
4708778c6fSJeremy L Thompson     /// let mut ind: Vec<i32> = vec![0; 2 * ne];
4808778c6fSJeremy L Thompson     /// for i in 0..ne {
4908778c6fSJeremy L Thompson     ///     ind[2 * i + 0] = i as i32;
5008778c6fSJeremy L Thompson     ///     ind[2 * i + 1] = (i + 1) as i32;
5108778c6fSJeremy L Thompson     /// }
5208778c6fSJeremy L Thompson     /// let r = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &ind)?;
5308778c6fSJeremy L Thompson     /// let strides: [i32; 3] = [1, q as i32, q as i32];
5408778c6fSJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, 2, 1, q * ne, strides)?;
5508778c6fSJeremy L Thompson     ///
5608778c6fSJeremy L Thompson     /// let b = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
5708778c6fSJeremy L Thompson     ///
5808778c6fSJeremy L Thompson     /// // Operator fields
5908778c6fSJeremy L Thompson     /// let op = ceed
6008778c6fSJeremy L Thompson     ///     .operator(&qf, QFunctionOpt::None, QFunctionOpt::None)?
6108778c6fSJeremy L Thompson     ///     .field("dx", &r, &b, VectorOpt::Active)?
6208778c6fSJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &b, VectorOpt::None)?
6308778c6fSJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?;
6408778c6fSJeremy L Thompson     ///
6508778c6fSJeremy L Thompson     /// let inputs = op.inputs()?;
6608778c6fSJeremy L Thompson     ///
6708778c6fSJeremy L Thompson     /// assert_eq!(inputs[0].name(), "dx", "Incorrect input name");
6808778c6fSJeremy L Thompson     /// assert_eq!(inputs[1].name(), "weights", "Incorrect input name");
6908778c6fSJeremy L Thompson     /// # Ok(())
7008778c6fSJeremy L Thompson     /// # }
7108778c6fSJeremy L Thompson     /// ```
7208778c6fSJeremy L Thompson     pub fn name(&self) -> &str {
7308778c6fSJeremy L Thompson         let mut name_ptr: *mut std::os::raw::c_char = std::ptr::null_mut();
7408778c6fSJeremy L Thompson         unsafe {
7508778c6fSJeremy L Thompson             bind_ceed::CeedOperatorFieldGetName(self.ptr, &mut name_ptr);
7608778c6fSJeremy L Thompson         }
7708778c6fSJeremy L Thompson         unsafe { CStr::from_ptr(name_ptr) }.to_str().unwrap()
7808778c6fSJeremy L Thompson     }
7908778c6fSJeremy L Thompson 
8008778c6fSJeremy L Thompson     /// Get the ElemRestriction of an OperatorField
8108778c6fSJeremy L Thompson     ///
8208778c6fSJeremy L Thompson     /// ```
8308778c6fSJeremy L Thompson     /// # use libceed::prelude::*;
84*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
8508778c6fSJeremy L Thompson     /// # let ceed = libceed::Ceed::default_init();
8608778c6fSJeremy L Thompson     /// let qf = ceed.q_function_interior_by_name("Mass1DBuild")?;
8708778c6fSJeremy L Thompson     ///
8808778c6fSJeremy L Thompson     /// // Operator field arguments
8908778c6fSJeremy L Thompson     /// let ne = 3;
9008778c6fSJeremy L Thompson     /// let q = 4 as usize;
9108778c6fSJeremy L Thompson     /// let mut ind: Vec<i32> = vec![0; 2 * ne];
9208778c6fSJeremy L Thompson     /// for i in 0..ne {
9308778c6fSJeremy L Thompson     ///     ind[2 * i + 0] = i as i32;
9408778c6fSJeremy L Thompson     ///     ind[2 * i + 1] = (i + 1) as i32;
9508778c6fSJeremy L Thompson     /// }
9608778c6fSJeremy L Thompson     /// let r = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &ind)?;
9708778c6fSJeremy L Thompson     /// let strides: [i32; 3] = [1, q as i32, q as i32];
9808778c6fSJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, 2, 1, q * ne, strides)?;
9908778c6fSJeremy L Thompson     ///
10008778c6fSJeremy L Thompson     /// let b = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
10108778c6fSJeremy L Thompson     ///
10208778c6fSJeremy L Thompson     /// // Operator fields
10308778c6fSJeremy L Thompson     /// let op = ceed
10408778c6fSJeremy L Thompson     ///     .operator(&qf, QFunctionOpt::None, QFunctionOpt::None)?
10508778c6fSJeremy L Thompson     ///     .field("dx", &r, &b, VectorOpt::Active)?
10608778c6fSJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &b, VectorOpt::None)?
10708778c6fSJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?;
10808778c6fSJeremy L Thompson     ///
10908778c6fSJeremy L Thompson     /// let inputs = op.inputs()?;
11008778c6fSJeremy L Thompson     ///
11108778c6fSJeremy L Thompson     /// assert!(
11208778c6fSJeremy L Thompson     ///     inputs[0].elem_restriction().is_some(),
11308778c6fSJeremy L Thompson     ///     "Incorrect field ElemRestriction"
11408778c6fSJeremy L Thompson     /// );
11508778c6fSJeremy L Thompson     /// if let ElemRestrictionOpt::Some(r) = inputs[0].elem_restriction() {
11608778c6fSJeremy L Thompson     ///     assert_eq!(
11708778c6fSJeremy L Thompson     ///         r.num_elements(),
11808778c6fSJeremy L Thompson     ///         ne,
11908778c6fSJeremy L Thompson     ///         "Incorrect field ElemRestriction number of elements"
12008778c6fSJeremy L Thompson     ///     );
12108778c6fSJeremy L Thompson     /// }
12208778c6fSJeremy L Thompson     ///
12308778c6fSJeremy L Thompson     /// assert!(
12408778c6fSJeremy L Thompson     ///     inputs[1].elem_restriction().is_none(),
12508778c6fSJeremy L Thompson     ///     "Incorrect field ElemRestriction"
12608778c6fSJeremy L Thompson     /// );
12708778c6fSJeremy L Thompson     /// # Ok(())
12808778c6fSJeremy L Thompson     /// # }
12908778c6fSJeremy L Thompson     /// ```
13008778c6fSJeremy L Thompson     pub fn elem_restriction(&self) -> ElemRestrictionOpt {
13108778c6fSJeremy L Thompson         let mut ptr = std::ptr::null_mut();
13208778c6fSJeremy L Thompson         unsafe {
13308778c6fSJeremy L Thompson             bind_ceed::CeedOperatorFieldGetElemRestriction(self.ptr, &mut ptr);
13408778c6fSJeremy L Thompson         }
13508778c6fSJeremy L Thompson         if ptr == unsafe { bind_ceed::CEED_ELEMRESTRICTION_NONE } {
13608778c6fSJeremy L Thompson             ElemRestrictionOpt::None
13708778c6fSJeremy L Thompson         } else {
13808778c6fSJeremy L Thompson             let slice = unsafe {
13908778c6fSJeremy L Thompson                 std::slice::from_raw_parts(
14008778c6fSJeremy L Thompson                     &ptr as *const bind_ceed::CeedElemRestriction as *const crate::ElemRestriction,
14108778c6fSJeremy L Thompson                     1 as usize,
14208778c6fSJeremy L Thompson                 )
14308778c6fSJeremy L Thompson             };
14408778c6fSJeremy L Thompson             ElemRestrictionOpt::Some(&slice[0])
14508778c6fSJeremy L Thompson         }
14608778c6fSJeremy L Thompson     }
14708778c6fSJeremy L Thompson 
14808778c6fSJeremy L Thompson     /// Get the Basis of an OperatorField
14908778c6fSJeremy L Thompson     ///
15008778c6fSJeremy L Thompson     /// ```
15108778c6fSJeremy L Thompson     /// # use libceed::prelude::*;
152*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
15308778c6fSJeremy L Thompson     /// # let ceed = libceed::Ceed::default_init();
15408778c6fSJeremy L Thompson     /// let qf = ceed.q_function_interior_by_name("Mass1DBuild")?;
15508778c6fSJeremy L Thompson     ///
15608778c6fSJeremy L Thompson     /// // Operator field arguments
15708778c6fSJeremy L Thompson     /// let ne = 3;
15808778c6fSJeremy L Thompson     /// let q = 4 as usize;
15908778c6fSJeremy L Thompson     /// let mut ind: Vec<i32> = vec![0; 2 * ne];
16008778c6fSJeremy L Thompson     /// for i in 0..ne {
16108778c6fSJeremy L Thompson     ///     ind[2 * i + 0] = i as i32;
16208778c6fSJeremy L Thompson     ///     ind[2 * i + 1] = (i + 1) as i32;
16308778c6fSJeremy L Thompson     /// }
16408778c6fSJeremy L Thompson     /// let r = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &ind)?;
16508778c6fSJeremy L Thompson     /// let strides: [i32; 3] = [1, q as i32, q as i32];
16608778c6fSJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, 2, 1, q * ne, strides)?;
16708778c6fSJeremy L Thompson     ///
16808778c6fSJeremy L Thompson     /// let b = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
16908778c6fSJeremy L Thompson     ///
17008778c6fSJeremy L Thompson     /// // Operator fields
17108778c6fSJeremy L Thompson     /// let op = ceed
17208778c6fSJeremy L Thompson     ///     .operator(&qf, QFunctionOpt::None, QFunctionOpt::None)?
17308778c6fSJeremy L Thompson     ///     .field("dx", &r, &b, VectorOpt::Active)?
17408778c6fSJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &b, VectorOpt::None)?
17508778c6fSJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?;
17608778c6fSJeremy L Thompson     ///
17708778c6fSJeremy L Thompson     /// let inputs = op.inputs()?;
17808778c6fSJeremy L Thompson     ///
17908778c6fSJeremy L Thompson     /// assert!(inputs[0].basis().is_some(), "Incorrect field Basis");
18008778c6fSJeremy L Thompson     /// if let BasisOpt::Some(b) = inputs[0].basis() {
18108778c6fSJeremy L Thompson     ///     assert_eq!(
18208778c6fSJeremy L Thompson     ///         b.num_quadrature_points(),
18308778c6fSJeremy L Thompson     ///         q,
18408778c6fSJeremy L Thompson     ///         "Incorrect field Basis number of quadrature points"
18508778c6fSJeremy L Thompson     ///     );
18608778c6fSJeremy L Thompson     /// }
18708778c6fSJeremy L Thompson     /// assert!(inputs[1].basis().is_some(), "Incorrect field Basis");
18808778c6fSJeremy L Thompson     /// if let BasisOpt::Some(b) = inputs[0].basis() {
18908778c6fSJeremy L Thompson     ///     assert_eq!(
19008778c6fSJeremy L Thompson     ///         b.num_quadrature_points(),
19108778c6fSJeremy L Thompson     ///         q,
19208778c6fSJeremy L Thompson     ///         "Incorrect field Basis number of quadrature points"
19308778c6fSJeremy L Thompson     ///     );
19408778c6fSJeremy L Thompson     /// }
19508778c6fSJeremy L Thompson     ///
19608778c6fSJeremy L Thompson     /// let outputs = op.outputs()?;
19708778c6fSJeremy L Thompson     ///
19808778c6fSJeremy L Thompson     /// assert!(outputs[0].basis().is_collocated(), "Incorrect field Basis");
19908778c6fSJeremy L Thompson     /// # Ok(())
20008778c6fSJeremy L Thompson     /// # }
20108778c6fSJeremy L Thompson     /// ```
20208778c6fSJeremy L Thompson     pub fn basis(&self) -> BasisOpt {
20308778c6fSJeremy L Thompson         let mut ptr = std::ptr::null_mut();
20408778c6fSJeremy L Thompson         unsafe {
20508778c6fSJeremy L Thompson             bind_ceed::CeedOperatorFieldGetBasis(self.ptr, &mut ptr);
20608778c6fSJeremy L Thompson         }
20708778c6fSJeremy L Thompson         if ptr == unsafe { bind_ceed::CEED_BASIS_COLLOCATED } {
20808778c6fSJeremy L Thompson             BasisOpt::Collocated
20908778c6fSJeremy L Thompson         } else {
21008778c6fSJeremy L Thompson             let slice = unsafe {
21108778c6fSJeremy L Thompson                 std::slice::from_raw_parts(
21208778c6fSJeremy L Thompson                     &ptr as *const bind_ceed::CeedBasis as *const crate::Basis,
21308778c6fSJeremy L Thompson                     1 as usize,
21408778c6fSJeremy L Thompson                 )
21508778c6fSJeremy L Thompson             };
21608778c6fSJeremy L Thompson             BasisOpt::Some(&slice[0])
21708778c6fSJeremy L Thompson         }
21808778c6fSJeremy L Thompson     }
21908778c6fSJeremy L Thompson 
22008778c6fSJeremy L Thompson     /// Get the Vector of an OperatorField
22108778c6fSJeremy L Thompson     ///
22208778c6fSJeremy L Thompson     /// ```
22308778c6fSJeremy L Thompson     /// # use libceed::prelude::*;
224*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
22508778c6fSJeremy L Thompson     /// # let ceed = libceed::Ceed::default_init();
22608778c6fSJeremy L Thompson     /// let qf = ceed.q_function_interior_by_name("Mass1DBuild")?;
22708778c6fSJeremy L Thompson     ///
22808778c6fSJeremy L Thompson     /// // Operator field arguments
22908778c6fSJeremy L Thompson     /// let ne = 3;
23008778c6fSJeremy L Thompson     /// let q = 4 as usize;
23108778c6fSJeremy L Thompson     /// let mut ind: Vec<i32> = vec![0; 2 * ne];
23208778c6fSJeremy L Thompson     /// for i in 0..ne {
23308778c6fSJeremy L Thompson     ///     ind[2 * i + 0] = i as i32;
23408778c6fSJeremy L Thompson     ///     ind[2 * i + 1] = (i + 1) as i32;
23508778c6fSJeremy L Thompson     /// }
23608778c6fSJeremy L Thompson     /// let r = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &ind)?;
23708778c6fSJeremy L Thompson     /// let strides: [i32; 3] = [1, q as i32, q as i32];
23808778c6fSJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, 2, 1, q * ne, strides)?;
23908778c6fSJeremy L Thompson     ///
24008778c6fSJeremy L Thompson     /// let b = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
24108778c6fSJeremy L Thompson     ///
24208778c6fSJeremy L Thompson     /// // Operator fields
24308778c6fSJeremy L Thompson     /// let op = ceed
24408778c6fSJeremy L Thompson     ///     .operator(&qf, QFunctionOpt::None, QFunctionOpt::None)?
24508778c6fSJeremy L Thompson     ///     .field("dx", &r, &b, VectorOpt::Active)?
24608778c6fSJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &b, VectorOpt::None)?
24708778c6fSJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?;
24808778c6fSJeremy L Thompson     ///
24908778c6fSJeremy L Thompson     /// let inputs = op.inputs()?;
25008778c6fSJeremy L Thompson     ///
25108778c6fSJeremy L Thompson     /// assert!(inputs[0].vector().is_active(), "Incorrect field Vector");
25208778c6fSJeremy L Thompson     /// assert!(inputs[1].vector().is_none(), "Incorrect field Vector");
25308778c6fSJeremy L Thompson     /// # Ok(())
25408778c6fSJeremy L Thompson     /// # }
25508778c6fSJeremy L Thompson     /// ```
25608778c6fSJeremy L Thompson     pub fn vector(&self) -> VectorOpt {
25708778c6fSJeremy L Thompson         let mut ptr = std::ptr::null_mut();
25808778c6fSJeremy L Thompson         unsafe {
25908778c6fSJeremy L Thompson             bind_ceed::CeedOperatorFieldGetVector(self.ptr, &mut ptr);
26008778c6fSJeremy L Thompson         }
26108778c6fSJeremy L Thompson         if ptr == unsafe { bind_ceed::CEED_VECTOR_ACTIVE } {
26208778c6fSJeremy L Thompson             VectorOpt::Active
26308778c6fSJeremy L Thompson         } else if ptr == unsafe { bind_ceed::CEED_VECTOR_NONE } {
26408778c6fSJeremy L Thompson             VectorOpt::None
26508778c6fSJeremy L Thompson         } else {
26608778c6fSJeremy L Thompson             let slice = unsafe {
26708778c6fSJeremy L Thompson                 std::slice::from_raw_parts(
26808778c6fSJeremy L Thompson                     &ptr as *const bind_ceed::CeedVector as *const crate::Vector,
26908778c6fSJeremy L Thompson                     1 as usize,
27008778c6fSJeremy L Thompson                 )
27108778c6fSJeremy L Thompson             };
27208778c6fSJeremy L Thompson             VectorOpt::Some(&slice[0])
27308778c6fSJeremy L Thompson         }
27408778c6fSJeremy L Thompson     }
27508778c6fSJeremy L Thompson }
27608778c6fSJeremy L Thompson 
27708778c6fSJeremy L Thompson // -----------------------------------------------------------------------------
2789df49d7eSJed Brown // CeedOperator context wrapper
2799df49d7eSJed Brown // -----------------------------------------------------------------------------
280c68be7a2SJeremy L Thompson #[derive(Debug)]
2819df49d7eSJed Brown pub(crate) struct OperatorCore<'a> {
2829df49d7eSJed Brown     ptr: bind_ceed::CeedOperator,
2831142270cSJeremy L Thompson     _lifeline: PhantomData<&'a ()>,
2849df49d7eSJed Brown }
2859df49d7eSJed Brown 
286c68be7a2SJeremy L Thompson #[derive(Debug)]
2879df49d7eSJed Brown pub struct Operator<'a> {
2889df49d7eSJed Brown     op_core: OperatorCore<'a>,
2899df49d7eSJed Brown }
2909df49d7eSJed Brown 
291c68be7a2SJeremy L Thompson #[derive(Debug)]
2929df49d7eSJed Brown pub struct CompositeOperator<'a> {
2939df49d7eSJed Brown     op_core: OperatorCore<'a>,
2949df49d7eSJed Brown }
2959df49d7eSJed Brown 
2969df49d7eSJed Brown // -----------------------------------------------------------------------------
2979df49d7eSJed Brown // Destructor
2989df49d7eSJed Brown // -----------------------------------------------------------------------------
2999df49d7eSJed Brown impl<'a> Drop for OperatorCore<'a> {
3009df49d7eSJed Brown     fn drop(&mut self) {
3019df49d7eSJed Brown         unsafe {
3029df49d7eSJed Brown             bind_ceed::CeedOperatorDestroy(&mut self.ptr);
3039df49d7eSJed Brown         }
3049df49d7eSJed Brown     }
3059df49d7eSJed Brown }
3069df49d7eSJed Brown 
3079df49d7eSJed Brown // -----------------------------------------------------------------------------
3089df49d7eSJed Brown // Display
3099df49d7eSJed Brown // -----------------------------------------------------------------------------
3109df49d7eSJed Brown impl<'a> fmt::Display for OperatorCore<'a> {
3119df49d7eSJed Brown     fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
3129df49d7eSJed Brown         let mut ptr = std::ptr::null_mut();
3139df49d7eSJed Brown         let mut sizeloc = crate::MAX_BUFFER_LENGTH;
3149df49d7eSJed Brown         let cstring = unsafe {
3159df49d7eSJed Brown             let file = bind_ceed::open_memstream(&mut ptr, &mut sizeloc);
3169df49d7eSJed Brown             bind_ceed::CeedOperatorView(self.ptr, file);
3179df49d7eSJed Brown             bind_ceed::fclose(file);
3189df49d7eSJed Brown             CString::from_raw(ptr)
3199df49d7eSJed Brown         };
3209df49d7eSJed Brown         cstring.to_string_lossy().fmt(f)
3219df49d7eSJed Brown     }
3229df49d7eSJed Brown }
3239df49d7eSJed Brown 
3249df49d7eSJed Brown /// View an Operator
3259df49d7eSJed Brown ///
3269df49d7eSJed Brown /// ```
3279df49d7eSJed Brown /// # use libceed::prelude::*;
328*89d15d5fSJeremy L Thompson /// # fn main() -> Result<()> {
3299df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init();
330c68be7a2SJeremy L Thompson /// let qf = ceed.q_function_interior_by_name("Mass1DBuild")?;
3319df49d7eSJed Brown ///
3329df49d7eSJed Brown /// // Operator field arguments
3339df49d7eSJed Brown /// let ne = 3;
3349df49d7eSJed Brown /// let q = 4 as usize;
3359df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * ne];
3369df49d7eSJed Brown /// for i in 0..ne {
3379df49d7eSJed Brown ///     ind[2 * i + 0] = i as i32;
3389df49d7eSJed Brown ///     ind[2 * i + 1] = (i + 1) as i32;
3399df49d7eSJed Brown /// }
340c68be7a2SJeremy L Thompson /// let r = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &ind)?;
3419df49d7eSJed Brown /// let strides: [i32; 3] = [1, q as i32, q as i32];
342c68be7a2SJeremy L Thompson /// let rq = ceed.strided_elem_restriction(ne, 2, 1, q * ne, strides)?;
3439df49d7eSJed Brown ///
344c68be7a2SJeremy L Thompson /// let b = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
3459df49d7eSJed Brown ///
3469df49d7eSJed Brown /// // Operator fields
3479df49d7eSJed Brown /// let op = ceed
348c68be7a2SJeremy L Thompson ///     .operator(&qf, QFunctionOpt::None, QFunctionOpt::None)?
349c68be7a2SJeremy L Thompson ///     .field("dx", &r, &b, VectorOpt::Active)?
350c68be7a2SJeremy L Thompson ///     .field("weights", ElemRestrictionOpt::None, &b, VectorOpt::None)?
351c68be7a2SJeremy L Thompson ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?;
3529df49d7eSJed Brown ///
3539df49d7eSJed Brown /// println!("{}", op);
354c68be7a2SJeremy L Thompson /// # Ok(())
355c68be7a2SJeremy L Thompson /// # }
3569df49d7eSJed Brown /// ```
3579df49d7eSJed Brown impl<'a> fmt::Display for Operator<'a> {
3589df49d7eSJed Brown     fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
3599df49d7eSJed Brown         self.op_core.fmt(f)
3609df49d7eSJed Brown     }
3619df49d7eSJed Brown }
3629df49d7eSJed Brown 
3639df49d7eSJed Brown /// View a composite Operator
3649df49d7eSJed Brown ///
3659df49d7eSJed Brown /// ```
3669df49d7eSJed Brown /// # use libceed::prelude::*;
367*89d15d5fSJeremy L Thompson /// # fn main() -> Result<()> {
3689df49d7eSJed Brown /// # let ceed = libceed::Ceed::default_init();
3699df49d7eSJed Brown ///
3709df49d7eSJed Brown /// // Sub operator field arguments
3719df49d7eSJed Brown /// let ne = 3;
3729df49d7eSJed Brown /// let q = 4 as usize;
3739df49d7eSJed Brown /// let mut ind: Vec<i32> = vec![0; 2 * ne];
3749df49d7eSJed Brown /// for i in 0..ne {
3759df49d7eSJed Brown ///     ind[2 * i + 0] = i as i32;
3769df49d7eSJed Brown ///     ind[2 * i + 1] = (i + 1) as i32;
3779df49d7eSJed Brown /// }
378c68be7a2SJeremy L Thompson /// let r = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &ind)?;
3799df49d7eSJed Brown /// let strides: [i32; 3] = [1, q as i32, q as i32];
380c68be7a2SJeremy L Thompson /// let rq = ceed.strided_elem_restriction(ne, 2, 1, q * ne, strides)?;
3819df49d7eSJed Brown ///
382c68be7a2SJeremy L Thompson /// let b = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
3839df49d7eSJed Brown ///
384c68be7a2SJeremy L Thompson /// let qdata_mass = ceed.vector(q * ne)?;
385c68be7a2SJeremy L Thompson /// let qdata_diff = ceed.vector(q * ne)?;
3869df49d7eSJed Brown ///
387c68be7a2SJeremy L Thompson /// let qf_mass = ceed.q_function_interior_by_name("MassApply")?;
3889df49d7eSJed Brown /// let op_mass = ceed
389c68be7a2SJeremy L Thompson ///     .operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?
390c68be7a2SJeremy L Thompson ///     .field("u", &r, &b, VectorOpt::Active)?
391c68be7a2SJeremy L Thompson ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata_mass)?
392c68be7a2SJeremy L Thompson ///     .field("v", &r, &b, VectorOpt::Active)?;
3939df49d7eSJed Brown ///
394c68be7a2SJeremy L Thompson /// let qf_diff = ceed.q_function_interior_by_name("Poisson1DApply")?;
3959df49d7eSJed Brown /// let op_diff = ceed
396c68be7a2SJeremy L Thompson ///     .operator(&qf_diff, QFunctionOpt::None, QFunctionOpt::None)?
397c68be7a2SJeremy L Thompson ///     .field("du", &r, &b, VectorOpt::Active)?
398c68be7a2SJeremy L Thompson ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata_diff)?
399c68be7a2SJeremy L Thompson ///     .field("dv", &r, &b, VectorOpt::Active)?;
4009df49d7eSJed Brown ///
4019df49d7eSJed Brown /// let op = ceed
402c68be7a2SJeremy L Thompson ///     .composite_operator()?
403c68be7a2SJeremy L Thompson ///     .sub_operator(&op_mass)?
404c68be7a2SJeremy L Thompson ///     .sub_operator(&op_diff)?;
4059df49d7eSJed Brown ///
4069df49d7eSJed Brown /// println!("{}", op);
407c68be7a2SJeremy L Thompson /// # Ok(())
408c68be7a2SJeremy L Thompson /// # }
4099df49d7eSJed Brown /// ```
4109df49d7eSJed Brown impl<'a> fmt::Display for CompositeOperator<'a> {
4119df49d7eSJed Brown     fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
4129df49d7eSJed Brown         self.op_core.fmt(f)
4139df49d7eSJed Brown     }
4149df49d7eSJed Brown }
4159df49d7eSJed Brown 
4169df49d7eSJed Brown // -----------------------------------------------------------------------------
4179df49d7eSJed Brown // Core functionality
4189df49d7eSJed Brown // -----------------------------------------------------------------------------
4199df49d7eSJed Brown impl<'a> OperatorCore<'a> {
4201142270cSJeremy L Thompson     // Error handling
4211142270cSJeremy L Thompson     #[doc(hidden)]
4221142270cSJeremy L Thompson     fn check_error(&self, ierr: i32) -> crate::Result<i32> {
4231142270cSJeremy L Thompson         let mut ptr = std::ptr::null_mut();
4241142270cSJeremy L Thompson         unsafe {
4251142270cSJeremy L Thompson             bind_ceed::CeedOperatorGetCeed(self.ptr, &mut ptr);
4261142270cSJeremy L Thompson         }
4271142270cSJeremy L Thompson         crate::check_error(ptr, ierr)
4281142270cSJeremy L Thompson     }
4291142270cSJeremy L Thompson 
4309df49d7eSJed Brown     // Common implementations
4319df49d7eSJed Brown     pub fn apply(&self, input: &Vector, output: &mut Vector) -> crate::Result<i32> {
4329df49d7eSJed Brown         let ierr = unsafe {
4339df49d7eSJed Brown             bind_ceed::CeedOperatorApply(
4349df49d7eSJed Brown                 self.ptr,
4359df49d7eSJed Brown                 input.ptr,
4369df49d7eSJed Brown                 output.ptr,
4379df49d7eSJed Brown                 bind_ceed::CEED_REQUEST_IMMEDIATE,
4389df49d7eSJed Brown             )
4399df49d7eSJed Brown         };
4401142270cSJeremy L Thompson         self.check_error(ierr)
4419df49d7eSJed Brown     }
4429df49d7eSJed Brown 
4439df49d7eSJed Brown     pub fn apply_add(&self, input: &Vector, output: &mut Vector) -> crate::Result<i32> {
4449df49d7eSJed Brown         let ierr = unsafe {
4459df49d7eSJed Brown             bind_ceed::CeedOperatorApplyAdd(
4469df49d7eSJed Brown                 self.ptr,
4479df49d7eSJed Brown                 input.ptr,
4489df49d7eSJed Brown                 output.ptr,
4499df49d7eSJed Brown                 bind_ceed::CEED_REQUEST_IMMEDIATE,
4509df49d7eSJed Brown             )
4519df49d7eSJed Brown         };
4521142270cSJeremy L Thompson         self.check_error(ierr)
4539df49d7eSJed Brown     }
4549df49d7eSJed Brown 
4559df49d7eSJed Brown     pub fn linear_assemble_diagonal(&self, assembled: &mut Vector) -> crate::Result<i32> {
4569df49d7eSJed Brown         let ierr = unsafe {
4579df49d7eSJed Brown             bind_ceed::CeedOperatorLinearAssembleDiagonal(
4589df49d7eSJed Brown                 self.ptr,
4599df49d7eSJed Brown                 assembled.ptr,
4609df49d7eSJed Brown                 bind_ceed::CEED_REQUEST_IMMEDIATE,
4619df49d7eSJed Brown             )
4629df49d7eSJed Brown         };
4631142270cSJeremy L Thompson         self.check_error(ierr)
4649df49d7eSJed Brown     }
4659df49d7eSJed Brown 
4669df49d7eSJed Brown     pub fn linear_assemble_add_diagonal(&self, assembled: &mut Vector) -> crate::Result<i32> {
4679df49d7eSJed Brown         let ierr = unsafe {
4689df49d7eSJed Brown             bind_ceed::CeedOperatorLinearAssembleAddDiagonal(
4699df49d7eSJed Brown                 self.ptr,
4709df49d7eSJed Brown                 assembled.ptr,
4719df49d7eSJed Brown                 bind_ceed::CEED_REQUEST_IMMEDIATE,
4729df49d7eSJed Brown             )
4739df49d7eSJed Brown         };
4741142270cSJeremy L Thompson         self.check_error(ierr)
4759df49d7eSJed Brown     }
4769df49d7eSJed Brown 
4779df49d7eSJed Brown     pub fn linear_assemble_point_block_diagonal(
4789df49d7eSJed Brown         &self,
4799df49d7eSJed Brown         assembled: &mut Vector,
4809df49d7eSJed Brown     ) -> crate::Result<i32> {
4819df49d7eSJed Brown         let ierr = unsafe {
4829df49d7eSJed Brown             bind_ceed::CeedOperatorLinearAssemblePointBlockDiagonal(
4839df49d7eSJed Brown                 self.ptr,
4849df49d7eSJed Brown                 assembled.ptr,
4859df49d7eSJed Brown                 bind_ceed::CEED_REQUEST_IMMEDIATE,
4869df49d7eSJed Brown             )
4879df49d7eSJed Brown         };
4881142270cSJeremy L Thompson         self.check_error(ierr)
4899df49d7eSJed Brown     }
4909df49d7eSJed Brown 
4919df49d7eSJed Brown     pub fn linear_assemble_add_point_block_diagonal(
4929df49d7eSJed Brown         &self,
4939df49d7eSJed Brown         assembled: &mut Vector,
4949df49d7eSJed Brown     ) -> crate::Result<i32> {
4959df49d7eSJed Brown         let ierr = unsafe {
4969df49d7eSJed Brown             bind_ceed::CeedOperatorLinearAssembleAddPointBlockDiagonal(
4979df49d7eSJed Brown                 self.ptr,
4989df49d7eSJed Brown                 assembled.ptr,
4999df49d7eSJed Brown                 bind_ceed::CEED_REQUEST_IMMEDIATE,
5009df49d7eSJed Brown             )
5019df49d7eSJed Brown         };
5021142270cSJeremy L Thompson         self.check_error(ierr)
5039df49d7eSJed Brown     }
5049df49d7eSJed Brown }
5059df49d7eSJed Brown 
5069df49d7eSJed Brown // -----------------------------------------------------------------------------
5079df49d7eSJed Brown // Operator
5089df49d7eSJed Brown // -----------------------------------------------------------------------------
5099df49d7eSJed Brown impl<'a> Operator<'a> {
5109df49d7eSJed Brown     // Constructor
5119df49d7eSJed Brown     pub fn create<'b>(
5129df49d7eSJed Brown         ceed: &'a crate::Ceed,
5139df49d7eSJed Brown         qf: impl Into<QFunctionOpt<'b>>,
5149df49d7eSJed Brown         dqf: impl Into<QFunctionOpt<'b>>,
5159df49d7eSJed Brown         dqfT: impl Into<QFunctionOpt<'b>>,
5169df49d7eSJed Brown     ) -> crate::Result<Self> {
5179df49d7eSJed Brown         let mut ptr = std::ptr::null_mut();
5189df49d7eSJed Brown         let ierr = unsafe {
5199df49d7eSJed Brown             bind_ceed::CeedOperatorCreate(
5209df49d7eSJed Brown                 ceed.ptr,
5219df49d7eSJed Brown                 qf.into().to_raw(),
5229df49d7eSJed Brown                 dqf.into().to_raw(),
5239df49d7eSJed Brown                 dqfT.into().to_raw(),
5249df49d7eSJed Brown                 &mut ptr,
5259df49d7eSJed Brown             )
5269df49d7eSJed Brown         };
5279df49d7eSJed Brown         ceed.check_error(ierr)?;
5289df49d7eSJed Brown         Ok(Self {
5291142270cSJeremy L Thompson             op_core: OperatorCore {
5301142270cSJeremy L Thompson                 ptr,
5311142270cSJeremy L Thompson                 _lifeline: PhantomData,
5321142270cSJeremy L Thompson             },
5339df49d7eSJed Brown         })
5349df49d7eSJed Brown     }
5359df49d7eSJed Brown 
5361142270cSJeremy L Thompson     fn from_raw(ptr: bind_ceed::CeedOperator) -> crate::Result<Self> {
5379df49d7eSJed Brown         Ok(Self {
5381142270cSJeremy L Thompson             op_core: OperatorCore {
5391142270cSJeremy L Thompson                 ptr,
5401142270cSJeremy L Thompson                 _lifeline: PhantomData,
5411142270cSJeremy L Thompson             },
5429df49d7eSJed Brown         })
5439df49d7eSJed Brown     }
5449df49d7eSJed Brown 
5459df49d7eSJed Brown     /// Apply Operator to a vector
5469df49d7eSJed Brown     ///
5479df49d7eSJed Brown     /// * `input`  - Input Vector
5489df49d7eSJed Brown     /// * `output` - Output Vector
5499df49d7eSJed Brown     ///
5509df49d7eSJed Brown     /// ```
5519df49d7eSJed Brown     /// # use libceed::prelude::*;
552*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
5539df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
5549df49d7eSJed Brown     /// let ne = 4;
5559df49d7eSJed Brown     /// let p = 3;
5569df49d7eSJed Brown     /// let q = 4;
5579df49d7eSJed Brown     /// let ndofs = p * ne - ne + 1;
5589df49d7eSJed Brown     ///
5599df49d7eSJed Brown     /// // Vectors
560c68be7a2SJeremy L Thompson     /// let x = ceed.vector_from_slice(&[-1., -0.5, 0.0, 0.5, 1.0])?;
561c68be7a2SJeremy L Thompson     /// let mut qdata = ceed.vector(ne * q)?;
5629df49d7eSJed Brown     /// qdata.set_value(0.0);
563c68be7a2SJeremy L Thompson     /// let u = ceed.vector_from_slice(&vec![1.0; ndofs])?;
564c68be7a2SJeremy L Thompson     /// let mut v = ceed.vector(ndofs)?;
5659df49d7eSJed Brown     /// v.set_value(0.0);
5669df49d7eSJed Brown     ///
5679df49d7eSJed Brown     /// // Restrictions
5689df49d7eSJed Brown     /// let mut indx: Vec<i32> = vec![0; 2 * ne];
5699df49d7eSJed Brown     /// for i in 0..ne {
5709df49d7eSJed Brown     ///     indx[2 * i + 0] = i as i32;
5719df49d7eSJed Brown     ///     indx[2 * i + 1] = (i + 1) as i32;
5729df49d7eSJed Brown     /// }
573c68be7a2SJeremy L Thompson     /// let rx = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &indx)?;
5749df49d7eSJed Brown     /// let mut indu: Vec<i32> = vec![0; p * ne];
5759df49d7eSJed Brown     /// for i in 0..ne {
5769df49d7eSJed Brown     ///     indu[p * i + 0] = i as i32;
5779df49d7eSJed Brown     ///     indu[p * i + 1] = (i + 1) as i32;
5789df49d7eSJed Brown     ///     indu[p * i + 2] = (i + 2) as i32;
5799df49d7eSJed Brown     /// }
580c68be7a2SJeremy L Thompson     /// let ru = ceed.elem_restriction(ne, 3, 1, 1, ndofs, MemType::Host, &indu)?;
5819df49d7eSJed Brown     /// let strides: [i32; 3] = [1, q as i32, q as i32];
582c68be7a2SJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, q, 1, q * ne, strides)?;
5839df49d7eSJed Brown     ///
5849df49d7eSJed Brown     /// // Bases
585c68be7a2SJeremy L Thompson     /// let bx = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
586c68be7a2SJeremy L Thompson     /// let bu = ceed.basis_tensor_H1_Lagrange(1, 1, p, q, QuadMode::Gauss)?;
5879df49d7eSJed Brown     ///
5889df49d7eSJed Brown     /// // Build quadrature data
589c68be7a2SJeremy L Thompson     /// let qf_build = ceed.q_function_interior_by_name("Mass1DBuild")?;
590c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build, QFunctionOpt::None, QFunctionOpt::None)?
591c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
592c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
593c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
594c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata)?;
5959df49d7eSJed Brown     ///
5969df49d7eSJed Brown     /// // Mass operator
597c68be7a2SJeremy L Thompson     /// let qf_mass = ceed.q_function_interior_by_name("MassApply")?;
5989df49d7eSJed Brown     /// let op_mass = ceed
599c68be7a2SJeremy L Thompson     ///     .operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?
600c68be7a2SJeremy L Thompson     ///     .field("u", &ru, &bu, VectorOpt::Active)?
601c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata)?
602c68be7a2SJeremy L Thompson     ///     .field("v", &ru, &bu, VectorOpt::Active)?;
6039df49d7eSJed Brown     ///
6049df49d7eSJed Brown     /// v.set_value(0.0);
605c68be7a2SJeremy L Thompson     /// op_mass.apply(&u, &mut v)?;
6069df49d7eSJed Brown     ///
6079df49d7eSJed Brown     /// // Check
60880a9ef05SNatalie Beams     /// let sum: Scalar = v.view().iter().sum();
6099df49d7eSJed Brown     /// assert!(
61080a9ef05SNatalie Beams     ///     (sum - 2.0).abs() < 10.0 * libceed::EPSILON,
6119df49d7eSJed Brown     ///     "Incorrect interval length computed"
6129df49d7eSJed Brown     /// );
613c68be7a2SJeremy L Thompson     /// # Ok(())
614c68be7a2SJeremy L Thompson     /// # }
6159df49d7eSJed Brown     /// ```
6169df49d7eSJed Brown     pub fn apply(&self, input: &Vector, output: &mut Vector) -> crate::Result<i32> {
6179df49d7eSJed Brown         self.op_core.apply(input, output)
6189df49d7eSJed Brown     }
6199df49d7eSJed Brown 
6209df49d7eSJed Brown     /// Apply Operator to a vector and add result to output vector
6219df49d7eSJed Brown     ///
6229df49d7eSJed Brown     /// * `input`  - Input Vector
6239df49d7eSJed Brown     /// * `output` - Output Vector
6249df49d7eSJed Brown     ///
6259df49d7eSJed Brown     /// ```
6269df49d7eSJed Brown     /// # use libceed::prelude::*;
627*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
6289df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
6299df49d7eSJed Brown     /// let ne = 4;
6309df49d7eSJed Brown     /// let p = 3;
6319df49d7eSJed Brown     /// let q = 4;
6329df49d7eSJed Brown     /// let ndofs = p * ne - ne + 1;
6339df49d7eSJed Brown     ///
6349df49d7eSJed Brown     /// // Vectors
635c68be7a2SJeremy L Thompson     /// let x = ceed.vector_from_slice(&[-1., -0.5, 0.0, 0.5, 1.0])?;
636c68be7a2SJeremy L Thompson     /// let mut qdata = ceed.vector(ne * q)?;
6379df49d7eSJed Brown     /// qdata.set_value(0.0);
638c68be7a2SJeremy L Thompson     /// let u = ceed.vector_from_slice(&vec![1.0; ndofs])?;
639c68be7a2SJeremy L Thompson     /// let mut v = ceed.vector(ndofs)?;
6409df49d7eSJed Brown     ///
6419df49d7eSJed Brown     /// // Restrictions
6429df49d7eSJed Brown     /// let mut indx: Vec<i32> = vec![0; 2 * ne];
6439df49d7eSJed Brown     /// for i in 0..ne {
6449df49d7eSJed Brown     ///     indx[2 * i + 0] = i as i32;
6459df49d7eSJed Brown     ///     indx[2 * i + 1] = (i + 1) as i32;
6469df49d7eSJed Brown     /// }
647c68be7a2SJeremy L Thompson     /// let rx = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &indx)?;
6489df49d7eSJed Brown     /// let mut indu: Vec<i32> = vec![0; p * ne];
6499df49d7eSJed Brown     /// for i in 0..ne {
6509df49d7eSJed Brown     ///     indu[p * i + 0] = i as i32;
6519df49d7eSJed Brown     ///     indu[p * i + 1] = (i + 1) as i32;
6529df49d7eSJed Brown     ///     indu[p * i + 2] = (i + 2) as i32;
6539df49d7eSJed Brown     /// }
654c68be7a2SJeremy L Thompson     /// let ru = ceed.elem_restriction(ne, 3, 1, 1, ndofs, MemType::Host, &indu)?;
6559df49d7eSJed Brown     /// let strides: [i32; 3] = [1, q as i32, q as i32];
656c68be7a2SJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, q, 1, q * ne, strides)?;
6579df49d7eSJed Brown     ///
6589df49d7eSJed Brown     /// // Bases
659c68be7a2SJeremy L Thompson     /// let bx = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
660c68be7a2SJeremy L Thompson     /// let bu = ceed.basis_tensor_H1_Lagrange(1, 1, p, q, QuadMode::Gauss)?;
6619df49d7eSJed Brown     ///
6629df49d7eSJed Brown     /// // Build quadrature data
663c68be7a2SJeremy L Thompson     /// let qf_build = ceed.q_function_interior_by_name("Mass1DBuild")?;
664c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build, QFunctionOpt::None, QFunctionOpt::None)?
665c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
666c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
667c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
668c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata)?;
6699df49d7eSJed Brown     ///
6709df49d7eSJed Brown     /// // Mass operator
671c68be7a2SJeremy L Thompson     /// let qf_mass = ceed.q_function_interior_by_name("MassApply")?;
6729df49d7eSJed Brown     /// let op_mass = ceed
673c68be7a2SJeremy L Thompson     ///     .operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?
674c68be7a2SJeremy L Thompson     ///     .field("u", &ru, &bu, VectorOpt::Active)?
675c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata)?
676c68be7a2SJeremy L Thompson     ///     .field("v", &ru, &bu, VectorOpt::Active)?;
6779df49d7eSJed Brown     ///
6789df49d7eSJed Brown     /// v.set_value(1.0);
679c68be7a2SJeremy L Thompson     /// op_mass.apply_add(&u, &mut v)?;
6809df49d7eSJed Brown     ///
6819df49d7eSJed Brown     /// // Check
68280a9ef05SNatalie Beams     /// let sum: Scalar = v.view().iter().sum();
6839df49d7eSJed Brown     /// assert!(
68480a9ef05SNatalie Beams     ///     (sum - (2.0 + ndofs as Scalar)).abs() < 10.0 * libceed::EPSILON,
6859df49d7eSJed Brown     ///     "Incorrect interval length computed and added"
6869df49d7eSJed Brown     /// );
687c68be7a2SJeremy L Thompson     /// # Ok(())
688c68be7a2SJeremy L Thompson     /// # }
6899df49d7eSJed Brown     /// ```
6909df49d7eSJed Brown     pub fn apply_add(&self, input: &Vector, output: &mut Vector) -> crate::Result<i32> {
6919df49d7eSJed Brown         self.op_core.apply_add(input, output)
6929df49d7eSJed Brown     }
6939df49d7eSJed Brown 
6949df49d7eSJed Brown     /// Provide a field to a Operator for use by its QFunction
6959df49d7eSJed Brown     ///
6969df49d7eSJed Brown     /// * `fieldname` - Name of the field (to be matched with the name used by
6979df49d7eSJed Brown     ///                   the QFunction)
6989df49d7eSJed Brown     /// * `r`         - ElemRestriction
6999df49d7eSJed Brown     /// * `b`         - Basis in which the field resides or `BasisCollocated` if
7009df49d7eSJed Brown     ///                   collocated with quadrature points
7019df49d7eSJed Brown     /// * `v`         - Vector to be used by Operator or `VectorActive` if field
7029df49d7eSJed Brown     ///                   is active or `VectorNone` if using `Weight` with the
7039df49d7eSJed Brown     ///                   QFunction
7049df49d7eSJed Brown     ///
7059df49d7eSJed Brown     ///
7069df49d7eSJed Brown     /// ```
7079df49d7eSJed Brown     /// # use libceed::prelude::*;
708*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
7099df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
710c68be7a2SJeremy L Thompson     /// let qf = ceed.q_function_interior_by_name("Mass1DBuild")?;
711c68be7a2SJeremy L Thompson     /// let mut op = ceed.operator(&qf, QFunctionOpt::None, QFunctionOpt::None)?;
7129df49d7eSJed Brown     ///
7139df49d7eSJed Brown     /// // Operator field arguments
7149df49d7eSJed Brown     /// let ne = 3;
7159df49d7eSJed Brown     /// let q = 4;
7169df49d7eSJed Brown     /// let mut ind: Vec<i32> = vec![0; 2 * ne];
7179df49d7eSJed Brown     /// for i in 0..ne {
7189df49d7eSJed Brown     ///     ind[2 * i + 0] = i as i32;
7199df49d7eSJed Brown     ///     ind[2 * i + 1] = (i + 1) as i32;
7209df49d7eSJed Brown     /// }
721c68be7a2SJeremy L Thompson     /// let r = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &ind)?;
7229df49d7eSJed Brown     ///
723c68be7a2SJeremy L Thompson     /// let b = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
7249df49d7eSJed Brown     ///
7259df49d7eSJed Brown     /// // Operator field
726c68be7a2SJeremy L Thompson     /// op = op.field("dx", &r, &b, VectorOpt::Active)?;
727c68be7a2SJeremy L Thompson     /// # Ok(())
728c68be7a2SJeremy L Thompson     /// # }
7299df49d7eSJed Brown     /// ```
7309df49d7eSJed Brown     #[allow(unused_mut)]
7319df49d7eSJed Brown     pub fn field<'b>(
7329df49d7eSJed Brown         mut self,
7339df49d7eSJed Brown         fieldname: &str,
7349df49d7eSJed Brown         r: impl Into<ElemRestrictionOpt<'b>>,
7359df49d7eSJed Brown         b: impl Into<BasisOpt<'b>>,
7369df49d7eSJed Brown         v: impl Into<VectorOpt<'b>>,
7379df49d7eSJed Brown     ) -> crate::Result<Self> {
7389df49d7eSJed Brown         let fieldname = CString::new(fieldname).expect("CString::new failed");
7399df49d7eSJed Brown         let fieldname = fieldname.as_ptr() as *const i8;
7409df49d7eSJed Brown         let ierr = unsafe {
7419df49d7eSJed Brown             bind_ceed::CeedOperatorSetField(
7429df49d7eSJed Brown                 self.op_core.ptr,
7439df49d7eSJed Brown                 fieldname,
7449df49d7eSJed Brown                 r.into().to_raw(),
7459df49d7eSJed Brown                 b.into().to_raw(),
7469df49d7eSJed Brown                 v.into().to_raw(),
7479df49d7eSJed Brown             )
7489df49d7eSJed Brown         };
7491142270cSJeremy L Thompson         self.op_core.check_error(ierr)?;
7509df49d7eSJed Brown         Ok(self)
7519df49d7eSJed Brown     }
7529df49d7eSJed Brown 
75308778c6fSJeremy L Thompson     /// Get a slice of Operator inputs
75408778c6fSJeremy L Thompson     ///
75508778c6fSJeremy L Thompson     /// ```
75608778c6fSJeremy L Thompson     /// # use libceed::prelude::*;
757*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
75808778c6fSJeremy L Thompson     /// # let ceed = libceed::Ceed::default_init();
75908778c6fSJeremy L Thompson     /// let qf = ceed.q_function_interior_by_name("Mass1DBuild")?;
76008778c6fSJeremy L Thompson     ///
76108778c6fSJeremy L Thompson     /// // Operator field arguments
76208778c6fSJeremy L Thompson     /// let ne = 3;
76308778c6fSJeremy L Thompson     /// let q = 4 as usize;
76408778c6fSJeremy L Thompson     /// let mut ind: Vec<i32> = vec![0; 2 * ne];
76508778c6fSJeremy L Thompson     /// for i in 0..ne {
76608778c6fSJeremy L Thompson     ///     ind[2 * i + 0] = i as i32;
76708778c6fSJeremy L Thompson     ///     ind[2 * i + 1] = (i + 1) as i32;
76808778c6fSJeremy L Thompson     /// }
76908778c6fSJeremy L Thompson     /// let r = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &ind)?;
77008778c6fSJeremy L Thompson     /// let strides: [i32; 3] = [1, q as i32, q as i32];
77108778c6fSJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, 2, 1, q * ne, strides)?;
77208778c6fSJeremy L Thompson     ///
77308778c6fSJeremy L Thompson     /// let b = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
77408778c6fSJeremy L Thompson     ///
77508778c6fSJeremy L Thompson     /// // Operator fields
77608778c6fSJeremy L Thompson     /// let op = ceed
77708778c6fSJeremy L Thompson     ///     .operator(&qf, QFunctionOpt::None, QFunctionOpt::None)?
77808778c6fSJeremy L Thompson     ///     .field("dx", &r, &b, VectorOpt::Active)?
77908778c6fSJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &b, VectorOpt::None)?
78008778c6fSJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?;
78108778c6fSJeremy L Thompson     ///
78208778c6fSJeremy L Thompson     /// let inputs = op.inputs()?;
78308778c6fSJeremy L Thompson     ///
78408778c6fSJeremy L Thompson     /// assert_eq!(inputs.len(), 2, "Incorrect inputs array");
78508778c6fSJeremy L Thompson     /// # Ok(())
78608778c6fSJeremy L Thompson     /// # }
78708778c6fSJeremy L Thompson     /// ```
78808778c6fSJeremy L Thompson     pub fn inputs(&self) -> crate::Result<&[crate::OperatorField]> {
78908778c6fSJeremy L Thompson         // Get array of raw C pointers for inputs
79008778c6fSJeremy L Thompson         let mut num_inputs = 0;
79108778c6fSJeremy L Thompson         let mut inputs_ptr = std::ptr::null_mut();
79208778c6fSJeremy L Thompson         let ierr = unsafe {
79308778c6fSJeremy L Thompson             bind_ceed::CeedOperatorGetFields(
79408778c6fSJeremy L Thompson                 self.op_core.ptr,
79508778c6fSJeremy L Thompson                 &mut num_inputs,
79608778c6fSJeremy L Thompson                 &mut inputs_ptr,
79708778c6fSJeremy L Thompson                 std::ptr::null_mut() as *mut bind_ceed::CeedInt,
79808778c6fSJeremy L Thompson                 std::ptr::null_mut() as *mut *mut bind_ceed::CeedOperatorField,
79908778c6fSJeremy L Thompson             )
80008778c6fSJeremy L Thompson         };
80108778c6fSJeremy L Thompson         self.op_core.check_error(ierr)?;
80208778c6fSJeremy L Thompson         // Convert raw C pointers to fixed length slice
80308778c6fSJeremy L Thompson         let inputs_slice = unsafe {
80408778c6fSJeremy L Thompson             std::slice::from_raw_parts(
80508778c6fSJeremy L Thompson                 inputs_ptr as *const crate::OperatorField,
80608778c6fSJeremy L Thompson                 num_inputs as usize,
80708778c6fSJeremy L Thompson             )
80808778c6fSJeremy L Thompson         };
80908778c6fSJeremy L Thompson         Ok(inputs_slice)
81008778c6fSJeremy L Thompson     }
81108778c6fSJeremy L Thompson 
81208778c6fSJeremy L Thompson     /// Get a slice of Operator outputs
81308778c6fSJeremy L Thompson     ///
81408778c6fSJeremy L Thompson     /// ```
81508778c6fSJeremy L Thompson     /// # use libceed::prelude::*;
816*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
81708778c6fSJeremy L Thompson     /// # let ceed = libceed::Ceed::default_init();
81808778c6fSJeremy L Thompson     /// let qf = ceed.q_function_interior_by_name("Mass1DBuild")?;
81908778c6fSJeremy L Thompson     ///
82008778c6fSJeremy L Thompson     /// // Operator field arguments
82108778c6fSJeremy L Thompson     /// let ne = 3;
82208778c6fSJeremy L Thompson     /// let q = 4 as usize;
82308778c6fSJeremy L Thompson     /// let mut ind: Vec<i32> = vec![0; 2 * ne];
82408778c6fSJeremy L Thompson     /// for i in 0..ne {
82508778c6fSJeremy L Thompson     ///     ind[2 * i + 0] = i as i32;
82608778c6fSJeremy L Thompson     ///     ind[2 * i + 1] = (i + 1) as i32;
82708778c6fSJeremy L Thompson     /// }
82808778c6fSJeremy L Thompson     /// let r = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &ind)?;
82908778c6fSJeremy L Thompson     /// let strides: [i32; 3] = [1, q as i32, q as i32];
83008778c6fSJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, 2, 1, q * ne, strides)?;
83108778c6fSJeremy L Thompson     ///
83208778c6fSJeremy L Thompson     /// let b = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
83308778c6fSJeremy L Thompson     ///
83408778c6fSJeremy L Thompson     /// // Operator fields
83508778c6fSJeremy L Thompson     /// let op = ceed
83608778c6fSJeremy L Thompson     ///     .operator(&qf, QFunctionOpt::None, QFunctionOpt::None)?
83708778c6fSJeremy L Thompson     ///     .field("dx", &r, &b, VectorOpt::Active)?
83808778c6fSJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &b, VectorOpt::None)?
83908778c6fSJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?;
84008778c6fSJeremy L Thompson     ///
84108778c6fSJeremy L Thompson     /// let outputs = op.outputs()?;
84208778c6fSJeremy L Thompson     ///
84308778c6fSJeremy L Thompson     /// assert_eq!(outputs.len(), 1, "Incorrect outputs array");
84408778c6fSJeremy L Thompson     /// # Ok(())
84508778c6fSJeremy L Thompson     /// # }
84608778c6fSJeremy L Thompson     /// ```
84708778c6fSJeremy L Thompson     pub fn outputs(&self) -> crate::Result<&[crate::OperatorField]> {
84808778c6fSJeremy L Thompson         // Get array of raw C pointers for outputs
84908778c6fSJeremy L Thompson         let mut num_outputs = 0;
85008778c6fSJeremy L Thompson         let mut outputs_ptr = std::ptr::null_mut();
85108778c6fSJeremy L Thompson         let ierr = unsafe {
85208778c6fSJeremy L Thompson             bind_ceed::CeedOperatorGetFields(
85308778c6fSJeremy L Thompson                 self.op_core.ptr,
85408778c6fSJeremy L Thompson                 std::ptr::null_mut() as *mut bind_ceed::CeedInt,
85508778c6fSJeremy L Thompson                 std::ptr::null_mut() as *mut *mut bind_ceed::CeedOperatorField,
85608778c6fSJeremy L Thompson                 &mut num_outputs,
85708778c6fSJeremy L Thompson                 &mut outputs_ptr,
85808778c6fSJeremy L Thompson             )
85908778c6fSJeremy L Thompson         };
86008778c6fSJeremy L Thompson         self.op_core.check_error(ierr)?;
86108778c6fSJeremy L Thompson         // Convert raw C pointers to fixed length slice
86208778c6fSJeremy L Thompson         let outputs_slice = unsafe {
86308778c6fSJeremy L Thompson             std::slice::from_raw_parts(
86408778c6fSJeremy L Thompson                 outputs_ptr as *const crate::OperatorField,
86508778c6fSJeremy L Thompson                 num_outputs as usize,
86608778c6fSJeremy L Thompson             )
86708778c6fSJeremy L Thompson         };
86808778c6fSJeremy L Thompson         Ok(outputs_slice)
86908778c6fSJeremy L Thompson     }
87008778c6fSJeremy L Thompson 
8713f2759cfSJeremy L Thompson     /// Get the number of elements associated with an Operator
8723f2759cfSJeremy L Thompson     ///
8733f2759cfSJeremy L Thompson     ///
8743f2759cfSJeremy L Thompson     /// ```
8753f2759cfSJeremy L Thompson     /// # use libceed::prelude::*;
876*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
8773f2759cfSJeremy L Thompson     /// # let ceed = libceed::Ceed::default_init();
8783f2759cfSJeremy L Thompson     /// let qf = ceed.q_function_interior_by_name("Mass1DBuild")?;
8793f2759cfSJeremy L Thompson     /// let mut op = ceed.operator(&qf, QFunctionOpt::None, QFunctionOpt::None)?;
8803f2759cfSJeremy L Thompson     ///
8813f2759cfSJeremy L Thompson     /// // Operator field arguments
8823f2759cfSJeremy L Thompson     /// let ne = 3;
8833f2759cfSJeremy L Thompson     /// let q = 4;
8843f2759cfSJeremy L Thompson     /// let mut ind: Vec<i32> = vec![0; 2 * ne];
8853f2759cfSJeremy L Thompson     /// for i in 0..ne {
8863f2759cfSJeremy L Thompson     ///     ind[2 * i + 0] = i as i32;
8873f2759cfSJeremy L Thompson     ///     ind[2 * i + 1] = (i + 1) as i32;
8883f2759cfSJeremy L Thompson     /// }
8893f2759cfSJeremy L Thompson     /// let r = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &ind)?;
8903f2759cfSJeremy L Thompson     ///
8913f2759cfSJeremy L Thompson     /// let b = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
8923f2759cfSJeremy L Thompson     ///
8933f2759cfSJeremy L Thompson     /// // Operator field
8943f2759cfSJeremy L Thompson     /// op = op.field("dx", &r, &b, VectorOpt::Active)?;
8953f2759cfSJeremy L Thompson     ///
8963f2759cfSJeremy L Thompson     /// // Check number of elements
8973f2759cfSJeremy L Thompson     /// assert_eq!(op.num_elements(), ne, "Incorrect number of elements");
8983f2759cfSJeremy L Thompson     /// # Ok(())
8993f2759cfSJeremy L Thompson     /// # }
9003f2759cfSJeremy L Thompson     /// ```
9013f2759cfSJeremy L Thompson     pub fn num_elements(&self) -> usize {
9023f2759cfSJeremy L Thompson         let mut nelem = 0;
9033f2759cfSJeremy L Thompson         unsafe { bind_ceed::CeedOperatorGetNumElements(self.op_core.ptr, &mut nelem) };
9043f2759cfSJeremy L Thompson         usize::try_from(nelem).unwrap()
9053f2759cfSJeremy L Thompson     }
9063f2759cfSJeremy L Thompson 
9073f2759cfSJeremy L Thompson     /// Get the number of quadrature points associated with each element of
9083f2759cfSJeremy L Thompson     ///   an Operator
9093f2759cfSJeremy L Thompson     ///
9103f2759cfSJeremy L Thompson     ///
9113f2759cfSJeremy L Thompson     /// ```
9123f2759cfSJeremy L Thompson     /// # use libceed::prelude::*;
913*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
9143f2759cfSJeremy L Thompson     /// # let ceed = libceed::Ceed::default_init();
9153f2759cfSJeremy L Thompson     /// let qf = ceed.q_function_interior_by_name("Mass1DBuild")?;
9163f2759cfSJeremy L Thompson     /// let mut op = ceed.operator(&qf, QFunctionOpt::None, QFunctionOpt::None)?;
9173f2759cfSJeremy L Thompson     ///
9183f2759cfSJeremy L Thompson     /// // Operator field arguments
9193f2759cfSJeremy L Thompson     /// let ne = 3;
9203f2759cfSJeremy L Thompson     /// let q = 4;
9213f2759cfSJeremy L Thompson     /// let mut ind: Vec<i32> = vec![0; 2 * ne];
9223f2759cfSJeremy L Thompson     /// for i in 0..ne {
9233f2759cfSJeremy L Thompson     ///     ind[2 * i + 0] = i as i32;
9243f2759cfSJeremy L Thompson     ///     ind[2 * i + 1] = (i + 1) as i32;
9253f2759cfSJeremy L Thompson     /// }
9263f2759cfSJeremy L Thompson     /// let r = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &ind)?;
9273f2759cfSJeremy L Thompson     ///
9283f2759cfSJeremy L Thompson     /// let b = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
9293f2759cfSJeremy L Thompson     ///
9303f2759cfSJeremy L Thompson     /// // Operator field
9313f2759cfSJeremy L Thompson     /// op = op.field("dx", &r, &b, VectorOpt::Active)?;
9323f2759cfSJeremy L Thompson     ///
9333f2759cfSJeremy L Thompson     /// // Check number of quadrature points
9343f2759cfSJeremy L Thompson     /// assert_eq!(
9353f2759cfSJeremy L Thompson     ///     op.num_quadrature_points(),
9363f2759cfSJeremy L Thompson     ///     q,
9373f2759cfSJeremy L Thompson     ///     "Incorrect number of quadrature points"
9383f2759cfSJeremy L Thompson     /// );
9393f2759cfSJeremy L Thompson     /// # Ok(())
9403f2759cfSJeremy L Thompson     /// # }
9413f2759cfSJeremy L Thompson     /// ```
9423f2759cfSJeremy L Thompson     pub fn num_quadrature_points(&self) -> usize {
9433f2759cfSJeremy L Thompson         let mut Q = 0;
9443f2759cfSJeremy L Thompson         unsafe { bind_ceed::CeedOperatorGetNumQuadraturePoints(self.op_core.ptr, &mut Q) };
9453f2759cfSJeremy L Thompson         usize::try_from(Q).unwrap()
9463f2759cfSJeremy L Thompson     }
9473f2759cfSJeremy L Thompson 
9489df49d7eSJed Brown     /// Assemble the diagonal of a square linear Operator
9499df49d7eSJed Brown     ///
9509df49d7eSJed Brown     /// This overwrites a Vector with the diagonal of a linear Operator.
9519df49d7eSJed Brown     ///
9529df49d7eSJed Brown     /// Note: Currently only non-composite Operators with a single field and
9539df49d7eSJed Brown     ///      composite Operators with single field sub-operators are supported.
9549df49d7eSJed Brown     ///
9559df49d7eSJed Brown     /// * `op`        - Operator to assemble QFunction
9569df49d7eSJed Brown     /// * `assembled` - Vector to store assembled Operator diagonal
9579df49d7eSJed Brown     ///
9589df49d7eSJed Brown     /// ```
9599df49d7eSJed Brown     /// # use libceed::prelude::*;
960*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
9619df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
9629df49d7eSJed Brown     /// let ne = 4;
9639df49d7eSJed Brown     /// let p = 3;
9649df49d7eSJed Brown     /// let q = 4;
9659df49d7eSJed Brown     /// let ndofs = p * ne - ne + 1;
9669df49d7eSJed Brown     ///
9679df49d7eSJed Brown     /// // Vectors
968c68be7a2SJeremy L Thompson     /// let x = ceed.vector_from_slice(&[-1., -0.5, 0.0, 0.5, 1.0])?;
969c68be7a2SJeremy L Thompson     /// let mut qdata = ceed.vector(ne * q)?;
9709df49d7eSJed Brown     /// qdata.set_value(0.0);
971c68be7a2SJeremy L Thompson     /// let mut u = ceed.vector(ndofs)?;
9729df49d7eSJed Brown     /// u.set_value(1.0);
973c68be7a2SJeremy L Thompson     /// let mut v = ceed.vector(ndofs)?;
9749df49d7eSJed Brown     /// v.set_value(0.0);
9759df49d7eSJed Brown     ///
9769df49d7eSJed Brown     /// // Restrictions
9779df49d7eSJed Brown     /// let mut indx: Vec<i32> = vec![0; 2 * ne];
9789df49d7eSJed Brown     /// for i in 0..ne {
9799df49d7eSJed Brown     ///     indx[2 * i + 0] = i as i32;
9809df49d7eSJed Brown     ///     indx[2 * i + 1] = (i + 1) as i32;
9819df49d7eSJed Brown     /// }
982c68be7a2SJeremy L Thompson     /// let rx = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &indx)?;
9839df49d7eSJed Brown     /// let mut indu: Vec<i32> = vec![0; p * ne];
9849df49d7eSJed Brown     /// for i in 0..ne {
9859df49d7eSJed Brown     ///     indu[p * i + 0] = (2 * i) as i32;
9869df49d7eSJed Brown     ///     indu[p * i + 1] = (2 * i + 1) as i32;
9879df49d7eSJed Brown     ///     indu[p * i + 2] = (2 * i + 2) as i32;
9889df49d7eSJed Brown     /// }
989c68be7a2SJeremy L Thompson     /// let ru = ceed.elem_restriction(ne, p, 1, 1, ndofs, MemType::Host, &indu)?;
9909df49d7eSJed Brown     /// let strides: [i32; 3] = [1, q as i32, q as i32];
991c68be7a2SJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, q, 1, q * ne, strides)?;
9929df49d7eSJed Brown     ///
9939df49d7eSJed Brown     /// // Bases
994c68be7a2SJeremy L Thompson     /// let bx = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
995c68be7a2SJeremy L Thompson     /// let bu = ceed.basis_tensor_H1_Lagrange(1, 1, p, q, QuadMode::Gauss)?;
9969df49d7eSJed Brown     ///
9979df49d7eSJed Brown     /// // Build quadrature data
998c68be7a2SJeremy L Thompson     /// let qf_build = ceed.q_function_interior_by_name("Mass1DBuild")?;
999c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build, QFunctionOpt::None, QFunctionOpt::None)?
1000c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
1001c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
1002c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
1003c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata)?;
10049df49d7eSJed Brown     ///
10059df49d7eSJed Brown     /// // Mass operator
1006c68be7a2SJeremy L Thompson     /// let qf_mass = ceed.q_function_interior_by_name("MassApply")?;
10079df49d7eSJed Brown     /// let op_mass = ceed
1008c68be7a2SJeremy L Thompson     ///     .operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?
1009c68be7a2SJeremy L Thompson     ///     .field("u", &ru, &bu, VectorOpt::Active)?
1010c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata)?
1011c68be7a2SJeremy L Thompson     ///     .field("v", &ru, &bu, VectorOpt::Active)?;
10129df49d7eSJed Brown     ///
10139df49d7eSJed Brown     /// // Diagonal
1014c68be7a2SJeremy L Thompson     /// let mut diag = ceed.vector(ndofs)?;
10159df49d7eSJed Brown     /// diag.set_value(0.0);
1016c68be7a2SJeremy L Thompson     /// op_mass.linear_assemble_diagonal(&mut diag)?;
10179df49d7eSJed Brown     ///
10189df49d7eSJed Brown     /// // Manual diagonal computation
1019c68be7a2SJeremy L Thompson     /// let mut true_diag = ceed.vector(ndofs)?;
10209df49d7eSJed Brown     /// for i in 0..ndofs {
10219df49d7eSJed Brown     ///     u.set_value(0.0);
10229df49d7eSJed Brown     ///     {
10239df49d7eSJed Brown     ///         let mut u_array = u.view_mut();
10249df49d7eSJed Brown     ///         u_array[i] = 1.;
10259df49d7eSJed Brown     ///     }
10269df49d7eSJed Brown     ///
1027c68be7a2SJeremy L Thompson     ///     op_mass.apply(&u, &mut v)?;
10289df49d7eSJed Brown     ///
10299df49d7eSJed Brown     ///     {
10309df49d7eSJed Brown     ///         let v_array = v.view_mut();
10319df49d7eSJed Brown     ///         let mut true_array = true_diag.view_mut();
10329df49d7eSJed Brown     ///         true_array[i] = v_array[i];
10339df49d7eSJed Brown     ///     }
10349df49d7eSJed Brown     /// }
10359df49d7eSJed Brown     ///
10369df49d7eSJed Brown     /// // Check
10379df49d7eSJed Brown     /// diag.view()
10389df49d7eSJed Brown     ///     .iter()
10399df49d7eSJed Brown     ///     .zip(true_diag.view().iter())
10409df49d7eSJed Brown     ///     .for_each(|(computed, actual)| {
10419df49d7eSJed Brown     ///         assert!(
104280a9ef05SNatalie Beams     ///             (*computed - *actual).abs() < 10.0 * libceed::EPSILON,
10439df49d7eSJed Brown     ///             "Diagonal entry incorrect"
10449df49d7eSJed Brown     ///         );
10459df49d7eSJed Brown     ///     });
1046c68be7a2SJeremy L Thompson     /// # Ok(())
1047c68be7a2SJeremy L Thompson     /// # }
10489df49d7eSJed Brown     /// ```
10499df49d7eSJed Brown     pub fn linear_assemble_diagonal(&self, assembled: &mut Vector) -> crate::Result<i32> {
10509df49d7eSJed Brown         self.op_core.linear_assemble_diagonal(assembled)
10519df49d7eSJed Brown     }
10529df49d7eSJed Brown 
10539df49d7eSJed Brown     /// Assemble the diagonal of a square linear Operator
10549df49d7eSJed Brown     ///
10559df49d7eSJed Brown     /// This sums into a Vector with the diagonal of a linear Operator.
10569df49d7eSJed Brown     ///
10579df49d7eSJed Brown     /// Note: Currently only non-composite Operators with a single field and
10589df49d7eSJed Brown     ///      composite Operators with single field sub-operators are supported.
10599df49d7eSJed Brown     ///
10609df49d7eSJed Brown     /// * `op`        - Operator to assemble QFunction
10619df49d7eSJed Brown     /// * `assembled` - Vector to store assembled Operator diagonal
10629df49d7eSJed Brown     ///
10639df49d7eSJed Brown     ///
10649df49d7eSJed Brown     /// ```
10659df49d7eSJed Brown     /// # use libceed::prelude::*;
1066*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
10679df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
10689df49d7eSJed Brown     /// let ne = 4;
10699df49d7eSJed Brown     /// let p = 3;
10709df49d7eSJed Brown     /// let q = 4;
10719df49d7eSJed Brown     /// let ndofs = p * ne - ne + 1;
10729df49d7eSJed Brown     ///
10739df49d7eSJed Brown     /// // Vectors
1074c68be7a2SJeremy L Thompson     /// let x = ceed.vector_from_slice(&[-1., -0.5, 0.0, 0.5, 1.0])?;
1075c68be7a2SJeremy L Thompson     /// let mut qdata = ceed.vector(ne * q)?;
10769df49d7eSJed Brown     /// qdata.set_value(0.0);
1077c68be7a2SJeremy L Thompson     /// let mut u = ceed.vector(ndofs)?;
10789df49d7eSJed Brown     /// u.set_value(1.0);
1079c68be7a2SJeremy L Thompson     /// let mut v = ceed.vector(ndofs)?;
10809df49d7eSJed Brown     /// v.set_value(0.0);
10819df49d7eSJed Brown     ///
10829df49d7eSJed Brown     /// // Restrictions
10839df49d7eSJed Brown     /// let mut indx: Vec<i32> = vec![0; 2 * ne];
10849df49d7eSJed Brown     /// for i in 0..ne {
10859df49d7eSJed Brown     ///     indx[2 * i + 0] = i as i32;
10869df49d7eSJed Brown     ///     indx[2 * i + 1] = (i + 1) as i32;
10879df49d7eSJed Brown     /// }
1088c68be7a2SJeremy L Thompson     /// let rx = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &indx)?;
10899df49d7eSJed Brown     /// let mut indu: Vec<i32> = vec![0; p * ne];
10909df49d7eSJed Brown     /// for i in 0..ne {
10919df49d7eSJed Brown     ///     indu[p * i + 0] = (2 * i) as i32;
10929df49d7eSJed Brown     ///     indu[p * i + 1] = (2 * i + 1) as i32;
10939df49d7eSJed Brown     ///     indu[p * i + 2] = (2 * i + 2) as i32;
10949df49d7eSJed Brown     /// }
1095c68be7a2SJeremy L Thompson     /// let ru = ceed.elem_restriction(ne, p, 1, 1, ndofs, MemType::Host, &indu)?;
10969df49d7eSJed Brown     /// let strides: [i32; 3] = [1, q as i32, q as i32];
1097c68be7a2SJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, q, 1, q * ne, strides)?;
10989df49d7eSJed Brown     ///
10999df49d7eSJed Brown     /// // Bases
1100c68be7a2SJeremy L Thompson     /// let bx = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
1101c68be7a2SJeremy L Thompson     /// let bu = ceed.basis_tensor_H1_Lagrange(1, 1, p, q, QuadMode::Gauss)?;
11029df49d7eSJed Brown     ///
11039df49d7eSJed Brown     /// // Build quadrature data
1104c68be7a2SJeremy L Thompson     /// let qf_build = ceed.q_function_interior_by_name("Mass1DBuild")?;
1105c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build, QFunctionOpt::None, QFunctionOpt::None)?
1106c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
1107c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
1108c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
1109c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata)?;
11109df49d7eSJed Brown     ///
11119df49d7eSJed Brown     /// // Mass operator
1112c68be7a2SJeremy L Thompson     /// let qf_mass = ceed.q_function_interior_by_name("MassApply")?;
11139df49d7eSJed Brown     /// let op_mass = ceed
1114c68be7a2SJeremy L Thompson     ///     .operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?
1115c68be7a2SJeremy L Thompson     ///     .field("u", &ru, &bu, VectorOpt::Active)?
1116c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata)?
1117c68be7a2SJeremy L Thompson     ///     .field("v", &ru, &bu, VectorOpt::Active)?;
11189df49d7eSJed Brown     ///
11199df49d7eSJed Brown     /// // Diagonal
1120c68be7a2SJeremy L Thompson     /// let mut diag = ceed.vector(ndofs)?;
11219df49d7eSJed Brown     /// diag.set_value(1.0);
1122c68be7a2SJeremy L Thompson     /// op_mass.linear_assemble_add_diagonal(&mut diag)?;
11239df49d7eSJed Brown     ///
11249df49d7eSJed Brown     /// // Manual diagonal computation
1125c68be7a2SJeremy L Thompson     /// let mut true_diag = ceed.vector(ndofs)?;
11269df49d7eSJed Brown     /// for i in 0..ndofs {
11279df49d7eSJed Brown     ///     u.set_value(0.0);
11289df49d7eSJed Brown     ///     {
11299df49d7eSJed Brown     ///         let mut u_array = u.view_mut();
11309df49d7eSJed Brown     ///         u_array[i] = 1.;
11319df49d7eSJed Brown     ///     }
11329df49d7eSJed Brown     ///
1133c68be7a2SJeremy L Thompson     ///     op_mass.apply(&u, &mut v)?;
11349df49d7eSJed Brown     ///
11359df49d7eSJed Brown     ///     {
11369df49d7eSJed Brown     ///         let v_array = v.view_mut();
11379df49d7eSJed Brown     ///         let mut true_array = true_diag.view_mut();
11389df49d7eSJed Brown     ///         true_array[i] = v_array[i] + 1.0;
11399df49d7eSJed Brown     ///     }
11409df49d7eSJed Brown     /// }
11419df49d7eSJed Brown     ///
11429df49d7eSJed Brown     /// // Check
11439df49d7eSJed Brown     /// diag.view()
11449df49d7eSJed Brown     ///     .iter()
11459df49d7eSJed Brown     ///     .zip(true_diag.view().iter())
11469df49d7eSJed Brown     ///     .for_each(|(computed, actual)| {
11479df49d7eSJed Brown     ///         assert!(
114880a9ef05SNatalie Beams     ///             (*computed - *actual).abs() < 10.0 * libceed::EPSILON,
11499df49d7eSJed Brown     ///             "Diagonal entry incorrect"
11509df49d7eSJed Brown     ///         );
11519df49d7eSJed Brown     ///     });
1152c68be7a2SJeremy L Thompson     /// # Ok(())
1153c68be7a2SJeremy L Thompson     /// # }
11549df49d7eSJed Brown     /// ```
11559df49d7eSJed Brown     pub fn linear_assemble_add_diagonal(&self, assembled: &mut Vector) -> crate::Result<i32> {
11569df49d7eSJed Brown         self.op_core.linear_assemble_add_diagonal(assembled)
11579df49d7eSJed Brown     }
11589df49d7eSJed Brown 
11599df49d7eSJed Brown     /// Assemble the point block diagonal of a square linear Operator
11609df49d7eSJed Brown     ///
11619df49d7eSJed Brown     /// This overwrites a Vector with the point block diagonal of a linear
11629df49d7eSJed Brown     /// Operator.
11639df49d7eSJed Brown     ///
11649df49d7eSJed Brown     /// Note: Currently only non-composite Operators with a single field and
11659df49d7eSJed Brown     ///      composite Operators with single field sub-operators are supported.
11669df49d7eSJed Brown     ///
11679df49d7eSJed Brown     /// * `op`        - Operator to assemble QFunction
11689df49d7eSJed Brown     /// * `assembled` - Vector to store assembled CeedOperator point block
11699df49d7eSJed Brown     ///                   diagonal, provided in row-major form with an
11709df49d7eSJed Brown     ///                   `ncomp * ncomp` block at each node. The dimensions of
11719df49d7eSJed Brown     ///                   this vector are derived from the active vector for
11729df49d7eSJed Brown     ///                   the CeedOperator. The array has shape
11739df49d7eSJed Brown     ///                   `[nodes, component out, component in]`.
11749df49d7eSJed Brown     ///
11759df49d7eSJed Brown     /// ```
11769df49d7eSJed Brown     /// # use libceed::prelude::*;
1177*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
11789df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
11799df49d7eSJed Brown     /// let ne = 4;
11809df49d7eSJed Brown     /// let p = 3;
11819df49d7eSJed Brown     /// let q = 4;
11829df49d7eSJed Brown     /// let ncomp = 2;
11839df49d7eSJed Brown     /// let ndofs = p * ne - ne + 1;
11849df49d7eSJed Brown     ///
11859df49d7eSJed Brown     /// // Vectors
1186c68be7a2SJeremy L Thompson     /// let x = ceed.vector_from_slice(&[-1., -0.5, 0.0, 0.5, 1.0])?;
1187c68be7a2SJeremy L Thompson     /// let mut qdata = ceed.vector(ne * q)?;
11889df49d7eSJed Brown     /// qdata.set_value(0.0);
1189c68be7a2SJeremy L Thompson     /// let mut u = ceed.vector(ncomp * ndofs)?;
11909df49d7eSJed Brown     /// u.set_value(1.0);
1191c68be7a2SJeremy L Thompson     /// let mut v = ceed.vector(ncomp * ndofs)?;
11929df49d7eSJed Brown     /// v.set_value(0.0);
11939df49d7eSJed Brown     ///
11949df49d7eSJed Brown     /// // Restrictions
11959df49d7eSJed Brown     /// let mut indx: Vec<i32> = vec![0; 2 * ne];
11969df49d7eSJed Brown     /// for i in 0..ne {
11979df49d7eSJed Brown     ///     indx[2 * i + 0] = i as i32;
11989df49d7eSJed Brown     ///     indx[2 * i + 1] = (i + 1) as i32;
11999df49d7eSJed Brown     /// }
1200c68be7a2SJeremy L Thompson     /// let rx = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &indx)?;
12019df49d7eSJed Brown     /// let mut indu: Vec<i32> = vec![0; p * ne];
12029df49d7eSJed Brown     /// for i in 0..ne {
12039df49d7eSJed Brown     ///     indu[p * i + 0] = (2 * i) as i32;
12049df49d7eSJed Brown     ///     indu[p * i + 1] = (2 * i + 1) as i32;
12059df49d7eSJed Brown     ///     indu[p * i + 2] = (2 * i + 2) as i32;
12069df49d7eSJed Brown     /// }
1207c68be7a2SJeremy L Thompson     /// let ru = ceed.elem_restriction(ne, p, ncomp, ndofs, ncomp * ndofs, MemType::Host, &indu)?;
12089df49d7eSJed Brown     /// let strides: [i32; 3] = [1, q as i32, q as i32];
1209c68be7a2SJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, q, 1, q * ne, strides)?;
12109df49d7eSJed Brown     ///
12119df49d7eSJed Brown     /// // Bases
1212c68be7a2SJeremy L Thompson     /// let bx = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
1213c68be7a2SJeremy L Thompson     /// let bu = ceed.basis_tensor_H1_Lagrange(1, ncomp, p, q, QuadMode::Gauss)?;
12149df49d7eSJed Brown     ///
12159df49d7eSJed Brown     /// // Build quadrature data
1216c68be7a2SJeremy L Thompson     /// let qf_build = ceed.q_function_interior_by_name("Mass1DBuild")?;
1217c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build, QFunctionOpt::None, QFunctionOpt::None)?
1218c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
1219c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
1220c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
1221c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata)?;
12229df49d7eSJed Brown     ///
12239df49d7eSJed Brown     /// // Mass operator
12249df49d7eSJed Brown     /// let mut mass_2_comp = |[u, qdata, ..]: QFunctionInputs, [v, ..]: QFunctionOutputs| {
12259df49d7eSJed Brown     ///     // Number of quadrature points
12269df49d7eSJed Brown     ///     let q = qdata.len();
12279df49d7eSJed Brown     ///
12289df49d7eSJed Brown     ///     // Iterate over quadrature points
12299df49d7eSJed Brown     ///     for i in 0..q {
12309df49d7eSJed Brown     ///         v[i + 0 * q] = u[i + 1 * q] * qdata[i];
12319df49d7eSJed Brown     ///         v[i + 1 * q] = u[i + 0 * q] * qdata[i];
12329df49d7eSJed Brown     ///     }
12339df49d7eSJed Brown     ///
12349df49d7eSJed Brown     ///     // Return clean error code
12359df49d7eSJed Brown     ///     0
12369df49d7eSJed Brown     /// };
12379df49d7eSJed Brown     ///
12389df49d7eSJed Brown     /// let qf_mass = ceed
1239c68be7a2SJeremy L Thompson     ///     .q_function_interior(1, Box::new(mass_2_comp))?
1240c68be7a2SJeremy L Thompson     ///     .input("u", 2, EvalMode::Interp)?
1241c68be7a2SJeremy L Thompson     ///     .input("qdata", 1, EvalMode::None)?
1242c68be7a2SJeremy L Thompson     ///     .output("v", 2, EvalMode::Interp)?;
12439df49d7eSJed Brown     ///
12449df49d7eSJed Brown     /// let op_mass = ceed
1245c68be7a2SJeremy L Thompson     ///     .operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?
1246c68be7a2SJeremy L Thompson     ///     .field("u", &ru, &bu, VectorOpt::Active)?
1247c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata)?
1248c68be7a2SJeremy L Thompson     ///     .field("v", &ru, &bu, VectorOpt::Active)?;
12499df49d7eSJed Brown     ///
12509df49d7eSJed Brown     /// // Diagonal
1251c68be7a2SJeremy L Thompson     /// let mut diag = ceed.vector(ncomp * ncomp * ndofs)?;
12529df49d7eSJed Brown     /// diag.set_value(0.0);
1253c68be7a2SJeremy L Thompson     /// op_mass.linear_assemble_point_block_diagonal(&mut diag)?;
12549df49d7eSJed Brown     ///
12559df49d7eSJed Brown     /// // Manual diagonal computation
1256c68be7a2SJeremy L Thompson     /// let mut true_diag = ceed.vector(ncomp * ncomp * ndofs)?;
12579df49d7eSJed Brown     /// for i in 0..ndofs {
12589df49d7eSJed Brown     ///     for j in 0..ncomp {
12599df49d7eSJed Brown     ///         u.set_value(0.0);
12609df49d7eSJed Brown     ///         {
12619df49d7eSJed Brown     ///             let mut u_array = u.view_mut();
12629df49d7eSJed Brown     ///             u_array[i + j * ndofs] = 1.;
12639df49d7eSJed Brown     ///         }
12649df49d7eSJed Brown     ///
1265c68be7a2SJeremy L Thompson     ///         op_mass.apply(&u, &mut v)?;
12669df49d7eSJed Brown     ///
12679df49d7eSJed Brown     ///         {
12689df49d7eSJed Brown     ///             let v_array = v.view_mut();
12699df49d7eSJed Brown     ///             let mut true_array = true_diag.view_mut();
12709df49d7eSJed Brown     ///             for k in 0..ncomp {
12719df49d7eSJed Brown     ///                 true_array[i * ncomp * ncomp + k * ncomp + j] = v_array[i + k * ndofs];
12729df49d7eSJed Brown     ///             }
12739df49d7eSJed Brown     ///         }
12749df49d7eSJed Brown     ///     }
12759df49d7eSJed Brown     /// }
12769df49d7eSJed Brown     ///
12779df49d7eSJed Brown     /// // Check
12789df49d7eSJed Brown     /// diag.view()
12799df49d7eSJed Brown     ///     .iter()
12809df49d7eSJed Brown     ///     .zip(true_diag.view().iter())
12819df49d7eSJed Brown     ///     .for_each(|(computed, actual)| {
12829df49d7eSJed Brown     ///         assert!(
128380a9ef05SNatalie Beams     ///             (*computed - *actual).abs() < 10.0 * libceed::EPSILON,
12849df49d7eSJed Brown     ///             "Diagonal entry incorrect"
12859df49d7eSJed Brown     ///         );
12869df49d7eSJed Brown     ///     });
1287c68be7a2SJeremy L Thompson     /// # Ok(())
1288c68be7a2SJeremy L Thompson     /// # }
12899df49d7eSJed Brown     /// ```
12909df49d7eSJed Brown     pub fn linear_assemble_point_block_diagonal(
12919df49d7eSJed Brown         &self,
12929df49d7eSJed Brown         assembled: &mut Vector,
12939df49d7eSJed Brown     ) -> crate::Result<i32> {
12949df49d7eSJed Brown         self.op_core.linear_assemble_point_block_diagonal(assembled)
12959df49d7eSJed Brown     }
12969df49d7eSJed Brown 
12979df49d7eSJed Brown     /// Assemble the point block diagonal of a square linear Operator
12989df49d7eSJed Brown     ///
12999df49d7eSJed Brown     /// This sums into a Vector with the point block diagonal of a linear
13009df49d7eSJed Brown     /// Operator.
13019df49d7eSJed Brown     ///
13029df49d7eSJed Brown     /// Note: Currently only non-composite Operators with a single field and
13039df49d7eSJed Brown     ///      composite Operators with single field sub-operators are supported.
13049df49d7eSJed Brown     ///
13059df49d7eSJed Brown     /// * `op`        -     Operator to assemble QFunction
13069df49d7eSJed Brown     /// * `assembled` - Vector to store assembled CeedOperator point block
13079df49d7eSJed Brown     ///                   diagonal, provided in row-major form with an
13089df49d7eSJed Brown     ///                   `ncomp * ncomp` block at each node. The dimensions of
13099df49d7eSJed Brown     ///                   this vector are derived from the active vector for
13109df49d7eSJed Brown     ///                   the CeedOperator. The array has shape
13119df49d7eSJed Brown     ///                   `[nodes, component out, component in]`.
13129df49d7eSJed Brown     ///
13139df49d7eSJed Brown     /// ```
13149df49d7eSJed Brown     /// # use libceed::prelude::*;
1315*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
13169df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
13179df49d7eSJed Brown     /// let ne = 4;
13189df49d7eSJed Brown     /// let p = 3;
13199df49d7eSJed Brown     /// let q = 4;
13209df49d7eSJed Brown     /// let ncomp = 2;
13219df49d7eSJed Brown     /// let ndofs = p * ne - ne + 1;
13229df49d7eSJed Brown     ///
13239df49d7eSJed Brown     /// // Vectors
1324c68be7a2SJeremy L Thompson     /// let x = ceed.vector_from_slice(&[-1., -0.5, 0.0, 0.5, 1.0])?;
1325c68be7a2SJeremy L Thompson     /// let mut qdata = ceed.vector(ne * q)?;
13269df49d7eSJed Brown     /// qdata.set_value(0.0);
1327c68be7a2SJeremy L Thompson     /// let mut u = ceed.vector(ncomp * ndofs)?;
13289df49d7eSJed Brown     /// u.set_value(1.0);
1329c68be7a2SJeremy L Thompson     /// let mut v = ceed.vector(ncomp * ndofs)?;
13309df49d7eSJed Brown     /// v.set_value(0.0);
13319df49d7eSJed Brown     ///
13329df49d7eSJed Brown     /// // Restrictions
13339df49d7eSJed Brown     /// let mut indx: Vec<i32> = vec![0; 2 * ne];
13349df49d7eSJed Brown     /// for i in 0..ne {
13359df49d7eSJed Brown     ///     indx[2 * i + 0] = i as i32;
13369df49d7eSJed Brown     ///     indx[2 * i + 1] = (i + 1) as i32;
13379df49d7eSJed Brown     /// }
1338c68be7a2SJeremy L Thompson     /// let rx = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &indx)?;
13399df49d7eSJed Brown     /// let mut indu: Vec<i32> = vec![0; p * ne];
13409df49d7eSJed Brown     /// for i in 0..ne {
13419df49d7eSJed Brown     ///     indu[p * i + 0] = (2 * i) as i32;
13429df49d7eSJed Brown     ///     indu[p * i + 1] = (2 * i + 1) as i32;
13439df49d7eSJed Brown     ///     indu[p * i + 2] = (2 * i + 2) as i32;
13449df49d7eSJed Brown     /// }
1345c68be7a2SJeremy L Thompson     /// let ru = ceed.elem_restriction(ne, p, ncomp, ndofs, ncomp * ndofs, MemType::Host, &indu)?;
13469df49d7eSJed Brown     /// let strides: [i32; 3] = [1, q as i32, q as i32];
1347c68be7a2SJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, q, 1, q * ne, strides)?;
13489df49d7eSJed Brown     ///
13499df49d7eSJed Brown     /// // Bases
1350c68be7a2SJeremy L Thompson     /// let bx = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
1351c68be7a2SJeremy L Thompson     /// let bu = ceed.basis_tensor_H1_Lagrange(1, ncomp, p, q, QuadMode::Gauss)?;
13529df49d7eSJed Brown     ///
13539df49d7eSJed Brown     /// // Build quadrature data
1354c68be7a2SJeremy L Thompson     /// let qf_build = ceed.q_function_interior_by_name("Mass1DBuild")?;
1355c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build, QFunctionOpt::None, QFunctionOpt::None)?
1356c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
1357c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
1358c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
1359c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata)?;
13609df49d7eSJed Brown     ///
13619df49d7eSJed Brown     /// // Mass operator
13629df49d7eSJed Brown     /// let mut mass_2_comp = |[u, qdata, ..]: QFunctionInputs, [v, ..]: QFunctionOutputs| {
13639df49d7eSJed Brown     ///     // Number of quadrature points
13649df49d7eSJed Brown     ///     let q = qdata.len();
13659df49d7eSJed Brown     ///
13669df49d7eSJed Brown     ///     // Iterate over quadrature points
13679df49d7eSJed Brown     ///     for i in 0..q {
13689df49d7eSJed Brown     ///         v[i + 0 * q] = u[i + 1 * q] * qdata[i];
13699df49d7eSJed Brown     ///         v[i + 1 * q] = u[i + 0 * q] * qdata[i];
13709df49d7eSJed Brown     ///     }
13719df49d7eSJed Brown     ///
13729df49d7eSJed Brown     ///     // Return clean error code
13739df49d7eSJed Brown     ///     0
13749df49d7eSJed Brown     /// };
13759df49d7eSJed Brown     ///
13769df49d7eSJed Brown     /// let qf_mass = ceed
1377c68be7a2SJeremy L Thompson     ///     .q_function_interior(1, Box::new(mass_2_comp))?
1378c68be7a2SJeremy L Thompson     ///     .input("u", 2, EvalMode::Interp)?
1379c68be7a2SJeremy L Thompson     ///     .input("qdata", 1, EvalMode::None)?
1380c68be7a2SJeremy L Thompson     ///     .output("v", 2, EvalMode::Interp)?;
13819df49d7eSJed Brown     ///
13829df49d7eSJed Brown     /// let op_mass = ceed
1383c68be7a2SJeremy L Thompson     ///     .operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?
1384c68be7a2SJeremy L Thompson     ///     .field("u", &ru, &bu, VectorOpt::Active)?
1385c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata)?
1386c68be7a2SJeremy L Thompson     ///     .field("v", &ru, &bu, VectorOpt::Active)?;
13879df49d7eSJed Brown     ///
13889df49d7eSJed Brown     /// // Diagonal
1389c68be7a2SJeremy L Thompson     /// let mut diag = ceed.vector(ncomp * ncomp * ndofs)?;
13909df49d7eSJed Brown     /// diag.set_value(1.0);
1391c68be7a2SJeremy L Thompson     /// op_mass.linear_assemble_add_point_block_diagonal(&mut diag)?;
13929df49d7eSJed Brown     ///
13939df49d7eSJed Brown     /// // Manual diagonal computation
1394c68be7a2SJeremy L Thompson     /// let mut true_diag = ceed.vector(ncomp * ncomp * ndofs)?;
13959df49d7eSJed Brown     /// for i in 0..ndofs {
13969df49d7eSJed Brown     ///     for j in 0..ncomp {
13979df49d7eSJed Brown     ///         u.set_value(0.0);
13989df49d7eSJed Brown     ///         {
13999df49d7eSJed Brown     ///             let mut u_array = u.view_mut();
14009df49d7eSJed Brown     ///             u_array[i + j * ndofs] = 1.;
14019df49d7eSJed Brown     ///         }
14029df49d7eSJed Brown     ///
1403c68be7a2SJeremy L Thompson     ///         op_mass.apply(&u, &mut v)?;
14049df49d7eSJed Brown     ///
14059df49d7eSJed Brown     ///         {
14069df49d7eSJed Brown     ///             let v_array = v.view_mut();
14079df49d7eSJed Brown     ///             let mut true_array = true_diag.view_mut();
14089df49d7eSJed Brown     ///             for k in 0..ncomp {
14099df49d7eSJed Brown     ///                 true_array[i * ncomp * ncomp + k * ncomp + j] = v_array[i + k * ndofs];
14109df49d7eSJed Brown     ///             }
14119df49d7eSJed Brown     ///         }
14129df49d7eSJed Brown     ///     }
14139df49d7eSJed Brown     /// }
14149df49d7eSJed Brown     ///
14159df49d7eSJed Brown     /// // Check
14169df49d7eSJed Brown     /// diag.view()
14179df49d7eSJed Brown     ///     .iter()
14189df49d7eSJed Brown     ///     .zip(true_diag.view().iter())
14199df49d7eSJed Brown     ///     .for_each(|(computed, actual)| {
14209df49d7eSJed Brown     ///         assert!(
142180a9ef05SNatalie Beams     ///             (*computed - 1.0 - *actual).abs() < 10.0 * libceed::EPSILON,
14229df49d7eSJed Brown     ///             "Diagonal entry incorrect"
14239df49d7eSJed Brown     ///         );
14249df49d7eSJed Brown     ///     });
1425c68be7a2SJeremy L Thompson     /// # Ok(())
1426c68be7a2SJeremy L Thompson     /// # }
14279df49d7eSJed Brown     /// ```
14289df49d7eSJed Brown     pub fn linear_assemble_add_point_block_diagonal(
14299df49d7eSJed Brown         &self,
14309df49d7eSJed Brown         assembled: &mut Vector,
14319df49d7eSJed Brown     ) -> crate::Result<i32> {
14329df49d7eSJed Brown         self.op_core
14339df49d7eSJed Brown             .linear_assemble_add_point_block_diagonal(assembled)
14349df49d7eSJed Brown     }
14359df49d7eSJed Brown 
14369df49d7eSJed Brown     /// Create a multigrid coarse Operator and level transfer Operators for a
14379df49d7eSJed Brown     ///   given Operator, creating the prolongation basis from the fine and
14389df49d7eSJed Brown     ///   coarse grid interpolation
14399df49d7eSJed Brown     ///
14409df49d7eSJed Brown     /// * `p_mult_fine`  - Lvector multiplicity in parallel gather/scatter
14419df49d7eSJed Brown     /// * `rstr_coarse`  - Coarse grid restriction
14429df49d7eSJed Brown     /// * `basis_coarse` - Coarse grid active vector basis
14439df49d7eSJed Brown     ///
14449df49d7eSJed Brown     /// ```
14459df49d7eSJed Brown     /// # use libceed::prelude::*;
1446*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
14479df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
14489df49d7eSJed Brown     /// let ne = 15;
14499df49d7eSJed Brown     /// let p_coarse = 3;
14509df49d7eSJed Brown     /// let p_fine = 5;
14519df49d7eSJed Brown     /// let q = 6;
14529df49d7eSJed Brown     /// let ndofs_coarse = p_coarse * ne - ne + 1;
14539df49d7eSJed Brown     /// let ndofs_fine = p_fine * ne - ne + 1;
14549df49d7eSJed Brown     ///
14559df49d7eSJed Brown     /// // Vectors
14569df49d7eSJed Brown     /// let x_array = (0..ne + 1)
145780a9ef05SNatalie Beams     ///     .map(|i| 2.0 * i as Scalar / ne as Scalar - 1.0)
145880a9ef05SNatalie Beams     ///     .collect::<Vec<Scalar>>();
1459c68be7a2SJeremy L Thompson     /// let x = ceed.vector_from_slice(&x_array)?;
1460c68be7a2SJeremy L Thompson     /// let mut qdata = ceed.vector(ne * q)?;
14619df49d7eSJed Brown     /// qdata.set_value(0.0);
1462c68be7a2SJeremy L Thompson     /// let mut u_coarse = ceed.vector(ndofs_coarse)?;
14639df49d7eSJed Brown     /// u_coarse.set_value(1.0);
1464c68be7a2SJeremy L Thompson     /// let mut u_fine = ceed.vector(ndofs_fine)?;
14659df49d7eSJed Brown     /// u_fine.set_value(1.0);
1466c68be7a2SJeremy L Thompson     /// let mut v_coarse = ceed.vector(ndofs_coarse)?;
14679df49d7eSJed Brown     /// v_coarse.set_value(0.0);
1468c68be7a2SJeremy L Thompson     /// let mut v_fine = ceed.vector(ndofs_fine)?;
14699df49d7eSJed Brown     /// v_fine.set_value(0.0);
1470c68be7a2SJeremy L Thompson     /// let mut multiplicity = ceed.vector(ndofs_fine)?;
14719df49d7eSJed Brown     /// multiplicity.set_value(1.0);
14729df49d7eSJed Brown     ///
14739df49d7eSJed Brown     /// // Restrictions
14749df49d7eSJed Brown     /// let strides: [i32; 3] = [1, q as i32, q as i32];
1475c68be7a2SJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, q, 1, q * ne, strides)?;
14769df49d7eSJed Brown     ///
14779df49d7eSJed Brown     /// let mut indx: Vec<i32> = vec![0; 2 * ne];
14789df49d7eSJed Brown     /// for i in 0..ne {
14799df49d7eSJed Brown     ///     indx[2 * i + 0] = i as i32;
14809df49d7eSJed Brown     ///     indx[2 * i + 1] = (i + 1) as i32;
14819df49d7eSJed Brown     /// }
1482c68be7a2SJeremy L Thompson     /// let rx = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &indx)?;
14839df49d7eSJed Brown     ///
14849df49d7eSJed Brown     /// let mut indu_coarse: Vec<i32> = vec![0; p_coarse * ne];
14859df49d7eSJed Brown     /// for i in 0..ne {
14869df49d7eSJed Brown     ///     for j in 0..p_coarse {
14879df49d7eSJed Brown     ///         indu_coarse[p_coarse * i + j] = (i + j) as i32;
14889df49d7eSJed Brown     ///     }
14899df49d7eSJed Brown     /// }
1490c68be7a2SJeremy L Thompson     /// let ru_coarse = ceed.elem_restriction(
14919df49d7eSJed Brown     ///     ne,
14929df49d7eSJed Brown     ///     p_coarse,
14939df49d7eSJed Brown     ///     1,
14949df49d7eSJed Brown     ///     1,
14959df49d7eSJed Brown     ///     ndofs_coarse,
14969df49d7eSJed Brown     ///     MemType::Host,
14979df49d7eSJed Brown     ///     &indu_coarse,
1498c68be7a2SJeremy L Thompson     /// )?;
14999df49d7eSJed Brown     ///
15009df49d7eSJed Brown     /// let mut indu_fine: Vec<i32> = vec![0; p_fine * ne];
15019df49d7eSJed Brown     /// for i in 0..ne {
15029df49d7eSJed Brown     ///     for j in 0..p_fine {
15039df49d7eSJed Brown     ///         indu_fine[p_fine * i + j] = (i + j) as i32;
15049df49d7eSJed Brown     ///     }
15059df49d7eSJed Brown     /// }
1506c68be7a2SJeremy L Thompson     /// let ru_fine = ceed.elem_restriction(ne, p_fine, 1, 1, ndofs_fine, MemType::Host, &indu_fine)?;
15079df49d7eSJed Brown     ///
15089df49d7eSJed Brown     /// // Bases
1509c68be7a2SJeremy L Thompson     /// let bx = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
1510c68be7a2SJeremy L Thompson     /// let bu_coarse = ceed.basis_tensor_H1_Lagrange(1, 1, p_coarse, q, QuadMode::Gauss)?;
1511c68be7a2SJeremy L Thompson     /// let bu_fine = ceed.basis_tensor_H1_Lagrange(1, 1, p_fine, q, QuadMode::Gauss)?;
15129df49d7eSJed Brown     ///
15139df49d7eSJed Brown     /// // Build quadrature data
1514c68be7a2SJeremy L Thompson     /// let qf_build = ceed.q_function_interior_by_name("Mass1DBuild")?;
1515c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build, QFunctionOpt::None, QFunctionOpt::None)?
1516c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
1517c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
1518c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
1519c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata)?;
15209df49d7eSJed Brown     ///
15219df49d7eSJed Brown     /// // Mass operator
1522c68be7a2SJeremy L Thompson     /// let qf_mass = ceed.q_function_interior_by_name("MassApply")?;
15239df49d7eSJed Brown     /// let op_mass_fine = ceed
1524c68be7a2SJeremy L Thompson     ///     .operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?
1525c68be7a2SJeremy L Thompson     ///     .field("u", &ru_fine, &bu_fine, VectorOpt::Active)?
1526c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata)?
1527c68be7a2SJeremy L Thompson     ///     .field("v", &ru_fine, &bu_fine, VectorOpt::Active)?;
15289df49d7eSJed Brown     ///
15299df49d7eSJed Brown     /// // Multigrid setup
1530c68be7a2SJeremy L Thompson     /// let (op_mass_coarse, op_prolong, op_restrict) =
1531c68be7a2SJeremy L Thompson     ///     op_mass_fine.create_multigrid_level(&multiplicity, &ru_coarse, &bu_coarse)?;
15329df49d7eSJed Brown     ///
15339df49d7eSJed Brown     /// // Coarse problem
15349df49d7eSJed Brown     /// u_coarse.set_value(1.0);
1535c68be7a2SJeremy L Thompson     /// op_mass_coarse.apply(&u_coarse, &mut v_coarse)?;
15369df49d7eSJed Brown     ///
15379df49d7eSJed Brown     /// // Check
153880a9ef05SNatalie Beams     /// let sum: Scalar = v_coarse.view().iter().sum();
15399df49d7eSJed Brown     /// assert!(
154080a9ef05SNatalie Beams     ///     (sum - 2.0).abs() < 50.0 * libceed::EPSILON,
15419df49d7eSJed Brown     ///     "Incorrect interval length computed"
15429df49d7eSJed Brown     /// );
15439df49d7eSJed Brown     ///
15449df49d7eSJed Brown     /// // Prolong
1545c68be7a2SJeremy L Thompson     /// op_prolong.apply(&u_coarse, &mut u_fine)?;
15469df49d7eSJed Brown     ///
15479df49d7eSJed Brown     /// // Fine problem
1548c68be7a2SJeremy L Thompson     /// op_mass_fine.apply(&u_fine, &mut v_fine)?;
15499df49d7eSJed Brown     ///
15509df49d7eSJed Brown     /// // Check
155180a9ef05SNatalie Beams     /// let sum: Scalar = v_fine.view().iter().sum();
15529df49d7eSJed Brown     /// assert!(
155380a9ef05SNatalie Beams     ///     (sum - 2.0).abs() < 50.0 * libceed::EPSILON,
15549df49d7eSJed Brown     ///     "Incorrect interval length computed"
15559df49d7eSJed Brown     /// );
15569df49d7eSJed Brown     ///
15579df49d7eSJed Brown     /// // Restrict
1558c68be7a2SJeremy L Thompson     /// op_restrict.apply(&v_fine, &mut v_coarse)?;
15599df49d7eSJed Brown     ///
15609df49d7eSJed Brown     /// // Check
156180a9ef05SNatalie Beams     /// let sum: Scalar = v_coarse.view().iter().sum();
15629df49d7eSJed Brown     /// assert!(
156380a9ef05SNatalie Beams     ///     (sum - 2.0).abs() < 50.0 * libceed::EPSILON,
15649df49d7eSJed Brown     ///     "Incorrect interval length computed"
15659df49d7eSJed Brown     /// );
1566c68be7a2SJeremy L Thompson     /// # Ok(())
1567c68be7a2SJeremy L Thompson     /// # }
15689df49d7eSJed Brown     /// ```
15699df49d7eSJed Brown     pub fn create_multigrid_level(
15709df49d7eSJed Brown         &self,
15719df49d7eSJed Brown         p_mult_fine: &Vector,
15729df49d7eSJed Brown         rstr_coarse: &ElemRestriction,
15739df49d7eSJed Brown         basis_coarse: &Basis,
15749df49d7eSJed Brown     ) -> crate::Result<(Operator, Operator, Operator)> {
15759df49d7eSJed Brown         let mut ptr_coarse = std::ptr::null_mut();
15769df49d7eSJed Brown         let mut ptr_prolong = std::ptr::null_mut();
15779df49d7eSJed Brown         let mut ptr_restrict = std::ptr::null_mut();
15789df49d7eSJed Brown         let ierr = unsafe {
15799df49d7eSJed Brown             bind_ceed::CeedOperatorMultigridLevelCreate(
15809df49d7eSJed Brown                 self.op_core.ptr,
15819df49d7eSJed Brown                 p_mult_fine.ptr,
15829df49d7eSJed Brown                 rstr_coarse.ptr,
15839df49d7eSJed Brown                 basis_coarse.ptr,
15849df49d7eSJed Brown                 &mut ptr_coarse,
15859df49d7eSJed Brown                 &mut ptr_prolong,
15869df49d7eSJed Brown                 &mut ptr_restrict,
15879df49d7eSJed Brown             )
15889df49d7eSJed Brown         };
15891142270cSJeremy L Thompson         self.op_core.check_error(ierr)?;
15901142270cSJeremy L Thompson         let op_coarse = Operator::from_raw(ptr_coarse)?;
15911142270cSJeremy L Thompson         let op_prolong = Operator::from_raw(ptr_prolong)?;
15921142270cSJeremy L Thompson         let op_restrict = Operator::from_raw(ptr_restrict)?;
15939df49d7eSJed Brown         Ok((op_coarse, op_prolong, op_restrict))
15949df49d7eSJed Brown     }
15959df49d7eSJed Brown 
15969df49d7eSJed Brown     /// Create a multigrid coarse Operator and level transfer Operators for a
15979df49d7eSJed Brown     ///   given Operator with a tensor basis for the active basis
15989df49d7eSJed Brown     ///
15999df49d7eSJed Brown     /// * `p_mult_fine`   - Lvector multiplicity in parallel gather/scatter
16009df49d7eSJed Brown     /// * `rstr_coarse`   - Coarse grid restriction
16019df49d7eSJed Brown     /// * `basis_coarse`  - Coarse grid active vector basis
16029df49d7eSJed Brown     /// * `interp_c_to_f` - Matrix for coarse to fine
16039df49d7eSJed Brown     ///
16049df49d7eSJed Brown     /// ```
16059df49d7eSJed Brown     /// # use libceed::prelude::*;
1606*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
16079df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
16089df49d7eSJed Brown     /// let ne = 15;
16099df49d7eSJed Brown     /// let p_coarse = 3;
16109df49d7eSJed Brown     /// let p_fine = 5;
16119df49d7eSJed Brown     /// let q = 6;
16129df49d7eSJed Brown     /// let ndofs_coarse = p_coarse * ne - ne + 1;
16139df49d7eSJed Brown     /// let ndofs_fine = p_fine * ne - ne + 1;
16149df49d7eSJed Brown     ///
16159df49d7eSJed Brown     /// // Vectors
16169df49d7eSJed Brown     /// let x_array = (0..ne + 1)
161780a9ef05SNatalie Beams     ///     .map(|i| 2.0 * i as Scalar / ne as Scalar - 1.0)
161880a9ef05SNatalie Beams     ///     .collect::<Vec<Scalar>>();
1619c68be7a2SJeremy L Thompson     /// let x = ceed.vector_from_slice(&x_array)?;
1620c68be7a2SJeremy L Thompson     /// let mut qdata = ceed.vector(ne * q)?;
16219df49d7eSJed Brown     /// qdata.set_value(0.0);
1622c68be7a2SJeremy L Thompson     /// let mut u_coarse = ceed.vector(ndofs_coarse)?;
16239df49d7eSJed Brown     /// u_coarse.set_value(1.0);
1624c68be7a2SJeremy L Thompson     /// let mut u_fine = ceed.vector(ndofs_fine)?;
16259df49d7eSJed Brown     /// u_fine.set_value(1.0);
1626c68be7a2SJeremy L Thompson     /// let mut v_coarse = ceed.vector(ndofs_coarse)?;
16279df49d7eSJed Brown     /// v_coarse.set_value(0.0);
1628c68be7a2SJeremy L Thompson     /// let mut v_fine = ceed.vector(ndofs_fine)?;
16299df49d7eSJed Brown     /// v_fine.set_value(0.0);
1630c68be7a2SJeremy L Thompson     /// let mut multiplicity = ceed.vector(ndofs_fine)?;
16319df49d7eSJed Brown     /// multiplicity.set_value(1.0);
16329df49d7eSJed Brown     ///
16339df49d7eSJed Brown     /// // Restrictions
16349df49d7eSJed Brown     /// let strides: [i32; 3] = [1, q as i32, q as i32];
1635c68be7a2SJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, q, 1, q * ne, strides)?;
16369df49d7eSJed Brown     ///
16379df49d7eSJed Brown     /// let mut indx: Vec<i32> = vec![0; 2 * ne];
16389df49d7eSJed Brown     /// for i in 0..ne {
16399df49d7eSJed Brown     ///     indx[2 * i + 0] = i as i32;
16409df49d7eSJed Brown     ///     indx[2 * i + 1] = (i + 1) as i32;
16419df49d7eSJed Brown     /// }
1642c68be7a2SJeremy L Thompson     /// let rx = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &indx)?;
16439df49d7eSJed Brown     ///
16449df49d7eSJed Brown     /// let mut indu_coarse: Vec<i32> = vec![0; p_coarse * ne];
16459df49d7eSJed Brown     /// for i in 0..ne {
16469df49d7eSJed Brown     ///     for j in 0..p_coarse {
16479df49d7eSJed Brown     ///         indu_coarse[p_coarse * i + j] = (i + j) as i32;
16489df49d7eSJed Brown     ///     }
16499df49d7eSJed Brown     /// }
1650c68be7a2SJeremy L Thompson     /// let ru_coarse = ceed.elem_restriction(
16519df49d7eSJed Brown     ///     ne,
16529df49d7eSJed Brown     ///     p_coarse,
16539df49d7eSJed Brown     ///     1,
16549df49d7eSJed Brown     ///     1,
16559df49d7eSJed Brown     ///     ndofs_coarse,
16569df49d7eSJed Brown     ///     MemType::Host,
16579df49d7eSJed Brown     ///     &indu_coarse,
1658c68be7a2SJeremy L Thompson     /// )?;
16599df49d7eSJed Brown     ///
16609df49d7eSJed Brown     /// let mut indu_fine: Vec<i32> = vec![0; p_fine * ne];
16619df49d7eSJed Brown     /// for i in 0..ne {
16629df49d7eSJed Brown     ///     for j in 0..p_fine {
16639df49d7eSJed Brown     ///         indu_fine[p_fine * i + j] = (i + j) as i32;
16649df49d7eSJed Brown     ///     }
16659df49d7eSJed Brown     /// }
1666c68be7a2SJeremy L Thompson     /// let ru_fine = ceed.elem_restriction(ne, p_fine, 1, 1, ndofs_fine, MemType::Host, &indu_fine)?;
16679df49d7eSJed Brown     ///
16689df49d7eSJed Brown     /// // Bases
1669c68be7a2SJeremy L Thompson     /// let bx = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
1670c68be7a2SJeremy L Thompson     /// let bu_coarse = ceed.basis_tensor_H1_Lagrange(1, 1, p_coarse, q, QuadMode::Gauss)?;
1671c68be7a2SJeremy L Thompson     /// let bu_fine = ceed.basis_tensor_H1_Lagrange(1, 1, p_fine, q, QuadMode::Gauss)?;
16729df49d7eSJed Brown     ///
16739df49d7eSJed Brown     /// // Build quadrature data
1674c68be7a2SJeremy L Thompson     /// let qf_build = ceed.q_function_interior_by_name("Mass1DBuild")?;
1675c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build, QFunctionOpt::None, QFunctionOpt::None)?
1676c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
1677c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
1678c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
1679c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata)?;
16809df49d7eSJed Brown     ///
16819df49d7eSJed Brown     /// // Mass operator
1682c68be7a2SJeremy L Thompson     /// let qf_mass = ceed.q_function_interior_by_name("MassApply")?;
16839df49d7eSJed Brown     /// let op_mass_fine = ceed
1684c68be7a2SJeremy L Thompson     ///     .operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?
1685c68be7a2SJeremy L Thompson     ///     .field("u", &ru_fine, &bu_fine, VectorOpt::Active)?
1686c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata)?
1687c68be7a2SJeremy L Thompson     ///     .field("v", &ru_fine, &bu_fine, VectorOpt::Active)?;
16889df49d7eSJed Brown     ///
16899df49d7eSJed Brown     /// // Multigrid setup
169080a9ef05SNatalie Beams     /// let mut interp_c_to_f: Vec<Scalar> = vec![0.; p_coarse * p_fine];
16919df49d7eSJed Brown     /// {
1692c68be7a2SJeremy L Thompson     ///     let mut coarse = ceed.vector(p_coarse)?;
1693c68be7a2SJeremy L Thompson     ///     let mut fine = ceed.vector(p_fine)?;
1694c68be7a2SJeremy L Thompson     ///     let basis_c_to_f =
1695c68be7a2SJeremy L Thompson     ///         ceed.basis_tensor_H1_Lagrange(1, 1, p_coarse, p_fine, QuadMode::GaussLobatto)?;
16969df49d7eSJed Brown     ///     for i in 0..p_coarse {
16979df49d7eSJed Brown     ///         coarse.set_value(0.0);
16989df49d7eSJed Brown     ///         {
16999df49d7eSJed Brown     ///             let mut array = coarse.view_mut();
17009df49d7eSJed Brown     ///             array[i] = 1.;
17019df49d7eSJed Brown     ///         }
1702c68be7a2SJeremy L Thompson     ///         basis_c_to_f.apply(
17039df49d7eSJed Brown     ///             1,
17049df49d7eSJed Brown     ///             TransposeMode::NoTranspose,
17059df49d7eSJed Brown     ///             EvalMode::Interp,
17069df49d7eSJed Brown     ///             &coarse,
17079df49d7eSJed Brown     ///             &mut fine,
1708c68be7a2SJeremy L Thompson     ///         )?;
17099df49d7eSJed Brown     ///         let array = fine.view();
17109df49d7eSJed Brown     ///         for j in 0..p_fine {
17119df49d7eSJed Brown     ///             interp_c_to_f[j * p_coarse + i] = array[j];
17129df49d7eSJed Brown     ///         }
17139df49d7eSJed Brown     ///     }
17149df49d7eSJed Brown     /// }
1715c68be7a2SJeremy L Thompson     /// let (op_mass_coarse, op_prolong, op_restrict) = op_mass_fine.create_multigrid_level_tensor_H1(
1716c68be7a2SJeremy L Thompson     ///     &multiplicity,
1717c68be7a2SJeremy L Thompson     ///     &ru_coarse,
1718c68be7a2SJeremy L Thompson     ///     &bu_coarse,
1719c68be7a2SJeremy L Thompson     ///     &interp_c_to_f,
1720c68be7a2SJeremy L Thompson     /// )?;
17219df49d7eSJed Brown     ///
17229df49d7eSJed Brown     /// // Coarse problem
17239df49d7eSJed Brown     /// u_coarse.set_value(1.0);
1724c68be7a2SJeremy L Thompson     /// op_mass_coarse.apply(&u_coarse, &mut v_coarse)?;
17259df49d7eSJed Brown     ///
17269df49d7eSJed Brown     /// // Check
172780a9ef05SNatalie Beams     /// let sum: Scalar = v_coarse.view().iter().sum();
17289df49d7eSJed Brown     /// assert!(
172980a9ef05SNatalie Beams     ///     (sum - 2.0).abs() < 10.0 * libceed::EPSILON,
17309df49d7eSJed Brown     ///     "Incorrect interval length computed"
17319df49d7eSJed Brown     /// );
17329df49d7eSJed Brown     ///
17339df49d7eSJed Brown     /// // Prolong
1734c68be7a2SJeremy L Thompson     /// op_prolong.apply(&u_coarse, &mut u_fine)?;
17359df49d7eSJed Brown     ///
17369df49d7eSJed Brown     /// // Fine problem
1737c68be7a2SJeremy L Thompson     /// op_mass_fine.apply(&u_fine, &mut v_fine)?;
17389df49d7eSJed Brown     ///
17399df49d7eSJed Brown     /// // Check
174080a9ef05SNatalie Beams     /// let sum: Scalar = v_fine.view().iter().sum();
17419df49d7eSJed Brown     /// assert!(
174280a9ef05SNatalie Beams     ///     (sum - 2.0).abs() < 10.0 * libceed::EPSILON,
17439df49d7eSJed Brown     ///     "Incorrect interval length computed"
17449df49d7eSJed Brown     /// );
17459df49d7eSJed Brown     ///
17469df49d7eSJed Brown     /// // Restrict
1747c68be7a2SJeremy L Thompson     /// op_restrict.apply(&v_fine, &mut v_coarse)?;
17489df49d7eSJed Brown     ///
17499df49d7eSJed Brown     /// // Check
175080a9ef05SNatalie Beams     /// let sum: Scalar = v_coarse.view().iter().sum();
17519df49d7eSJed Brown     /// assert!(
175280a9ef05SNatalie Beams     ///     (sum - 2.0).abs() < 10.0 * libceed::EPSILON,
17539df49d7eSJed Brown     ///     "Incorrect interval length computed"
17549df49d7eSJed Brown     /// );
1755c68be7a2SJeremy L Thompson     /// # Ok(())
1756c68be7a2SJeremy L Thompson     /// # }
17579df49d7eSJed Brown     /// ```
17589df49d7eSJed Brown     pub fn create_multigrid_level_tensor_H1(
17599df49d7eSJed Brown         &self,
17609df49d7eSJed Brown         p_mult_fine: &Vector,
17619df49d7eSJed Brown         rstr_coarse: &ElemRestriction,
17629df49d7eSJed Brown         basis_coarse: &Basis,
176380a9ef05SNatalie Beams         interpCtoF: &Vec<Scalar>,
17649df49d7eSJed Brown     ) -> crate::Result<(Operator, Operator, Operator)> {
17659df49d7eSJed Brown         let mut ptr_coarse = std::ptr::null_mut();
17669df49d7eSJed Brown         let mut ptr_prolong = std::ptr::null_mut();
17679df49d7eSJed Brown         let mut ptr_restrict = std::ptr::null_mut();
17689df49d7eSJed Brown         let ierr = unsafe {
17699df49d7eSJed Brown             bind_ceed::CeedOperatorMultigridLevelCreateTensorH1(
17709df49d7eSJed Brown                 self.op_core.ptr,
17719df49d7eSJed Brown                 p_mult_fine.ptr,
17729df49d7eSJed Brown                 rstr_coarse.ptr,
17739df49d7eSJed Brown                 basis_coarse.ptr,
17749df49d7eSJed Brown                 interpCtoF.as_ptr(),
17759df49d7eSJed Brown                 &mut ptr_coarse,
17769df49d7eSJed Brown                 &mut ptr_prolong,
17779df49d7eSJed Brown                 &mut ptr_restrict,
17789df49d7eSJed Brown             )
17799df49d7eSJed Brown         };
17801142270cSJeremy L Thompson         self.op_core.check_error(ierr)?;
17811142270cSJeremy L Thompson         let op_coarse = Operator::from_raw(ptr_coarse)?;
17821142270cSJeremy L Thompson         let op_prolong = Operator::from_raw(ptr_prolong)?;
17831142270cSJeremy L Thompson         let op_restrict = Operator::from_raw(ptr_restrict)?;
17849df49d7eSJed Brown         Ok((op_coarse, op_prolong, op_restrict))
17859df49d7eSJed Brown     }
17869df49d7eSJed Brown 
17879df49d7eSJed Brown     /// Create a multigrid coarse Operator and level transfer Operators for a
17889df49d7eSJed Brown     ///   given Operator with a non-tensor basis for the active basis
17899df49d7eSJed Brown     ///
17909df49d7eSJed Brown     /// * `p_mult_fine`   - Lvector multiplicity in parallel gather/scatter
17919df49d7eSJed Brown     /// * `rstr_coarse`   - Coarse grid restriction
17929df49d7eSJed Brown     /// * `basis_coarse`  - Coarse grid active vector basis
17939df49d7eSJed Brown     /// * `interp_c_to_f` - Matrix for coarse to fine
17949df49d7eSJed Brown     ///
17959df49d7eSJed Brown     /// ```
17969df49d7eSJed Brown     /// # use libceed::prelude::*;
1797*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
17989df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
17999df49d7eSJed Brown     /// let ne = 15;
18009df49d7eSJed Brown     /// let p_coarse = 3;
18019df49d7eSJed Brown     /// let p_fine = 5;
18029df49d7eSJed Brown     /// let q = 6;
18039df49d7eSJed Brown     /// let ndofs_coarse = p_coarse * ne - ne + 1;
18049df49d7eSJed Brown     /// let ndofs_fine = p_fine * ne - ne + 1;
18059df49d7eSJed Brown     ///
18069df49d7eSJed Brown     /// // Vectors
18079df49d7eSJed Brown     /// let x_array = (0..ne + 1)
180880a9ef05SNatalie Beams     ///     .map(|i| 2.0 * i as Scalar / ne as Scalar - 1.0)
180980a9ef05SNatalie Beams     ///     .collect::<Vec<Scalar>>();
1810c68be7a2SJeremy L Thompson     /// let x = ceed.vector_from_slice(&x_array)?;
1811c68be7a2SJeremy L Thompson     /// let mut qdata = ceed.vector(ne * q)?;
18129df49d7eSJed Brown     /// qdata.set_value(0.0);
1813c68be7a2SJeremy L Thompson     /// let mut u_coarse = ceed.vector(ndofs_coarse)?;
18149df49d7eSJed Brown     /// u_coarse.set_value(1.0);
1815c68be7a2SJeremy L Thompson     /// let mut u_fine = ceed.vector(ndofs_fine)?;
18169df49d7eSJed Brown     /// u_fine.set_value(1.0);
1817c68be7a2SJeremy L Thompson     /// let mut v_coarse = ceed.vector(ndofs_coarse)?;
18189df49d7eSJed Brown     /// v_coarse.set_value(0.0);
1819c68be7a2SJeremy L Thompson     /// let mut v_fine = ceed.vector(ndofs_fine)?;
18209df49d7eSJed Brown     /// v_fine.set_value(0.0);
1821c68be7a2SJeremy L Thompson     /// let mut multiplicity = ceed.vector(ndofs_fine)?;
18229df49d7eSJed Brown     /// multiplicity.set_value(1.0);
18239df49d7eSJed Brown     ///
18249df49d7eSJed Brown     /// // Restrictions
18259df49d7eSJed Brown     /// let strides: [i32; 3] = [1, q as i32, q as i32];
1826c68be7a2SJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, q, 1, q * ne, strides)?;
18279df49d7eSJed Brown     ///
18289df49d7eSJed Brown     /// let mut indx: Vec<i32> = vec![0; 2 * ne];
18299df49d7eSJed Brown     /// for i in 0..ne {
18309df49d7eSJed Brown     ///     indx[2 * i + 0] = i as i32;
18319df49d7eSJed Brown     ///     indx[2 * i + 1] = (i + 1) as i32;
18329df49d7eSJed Brown     /// }
1833c68be7a2SJeremy L Thompson     /// let rx = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &indx)?;
18349df49d7eSJed Brown     ///
18359df49d7eSJed Brown     /// let mut indu_coarse: Vec<i32> = vec![0; p_coarse * ne];
18369df49d7eSJed Brown     /// for i in 0..ne {
18379df49d7eSJed Brown     ///     for j in 0..p_coarse {
18389df49d7eSJed Brown     ///         indu_coarse[p_coarse * i + j] = (i + j) as i32;
18399df49d7eSJed Brown     ///     }
18409df49d7eSJed Brown     /// }
1841c68be7a2SJeremy L Thompson     /// let ru_coarse = ceed.elem_restriction(
18429df49d7eSJed Brown     ///     ne,
18439df49d7eSJed Brown     ///     p_coarse,
18449df49d7eSJed Brown     ///     1,
18459df49d7eSJed Brown     ///     1,
18469df49d7eSJed Brown     ///     ndofs_coarse,
18479df49d7eSJed Brown     ///     MemType::Host,
18489df49d7eSJed Brown     ///     &indu_coarse,
1849c68be7a2SJeremy L Thompson     /// )?;
18509df49d7eSJed Brown     ///
18519df49d7eSJed Brown     /// let mut indu_fine: Vec<i32> = vec![0; p_fine * ne];
18529df49d7eSJed Brown     /// for i in 0..ne {
18539df49d7eSJed Brown     ///     for j in 0..p_fine {
18549df49d7eSJed Brown     ///         indu_fine[p_fine * i + j] = (i + j) as i32;
18559df49d7eSJed Brown     ///     }
18569df49d7eSJed Brown     /// }
1857c68be7a2SJeremy L Thompson     /// let ru_fine = ceed.elem_restriction(ne, p_fine, 1, 1, ndofs_fine, MemType::Host, &indu_fine)?;
18589df49d7eSJed Brown     ///
18599df49d7eSJed Brown     /// // Bases
1860c68be7a2SJeremy L Thompson     /// let bx = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
1861c68be7a2SJeremy L Thompson     /// let bu_coarse = ceed.basis_tensor_H1_Lagrange(1, 1, p_coarse, q, QuadMode::Gauss)?;
1862c68be7a2SJeremy L Thompson     /// let bu_fine = ceed.basis_tensor_H1_Lagrange(1, 1, p_fine, q, QuadMode::Gauss)?;
18639df49d7eSJed Brown     ///
18649df49d7eSJed Brown     /// // Build quadrature data
1865c68be7a2SJeremy L Thompson     /// let qf_build = ceed.q_function_interior_by_name("Mass1DBuild")?;
1866c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build, QFunctionOpt::None, QFunctionOpt::None)?
1867c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
1868c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
1869c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
1870c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata)?;
18719df49d7eSJed Brown     ///
18729df49d7eSJed Brown     /// // Mass operator
1873c68be7a2SJeremy L Thompson     /// let qf_mass = ceed.q_function_interior_by_name("MassApply")?;
18749df49d7eSJed Brown     /// let op_mass_fine = ceed
1875c68be7a2SJeremy L Thompson     ///     .operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?
1876c68be7a2SJeremy L Thompson     ///     .field("u", &ru_fine, &bu_fine, VectorOpt::Active)?
1877c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata)?
1878c68be7a2SJeremy L Thompson     ///     .field("v", &ru_fine, &bu_fine, VectorOpt::Active)?;
18799df49d7eSJed Brown     ///
18809df49d7eSJed Brown     /// // Multigrid setup
188180a9ef05SNatalie Beams     /// let mut interp_c_to_f: Vec<Scalar> = vec![0.; p_coarse * p_fine];
18829df49d7eSJed Brown     /// {
1883c68be7a2SJeremy L Thompson     ///     let mut coarse = ceed.vector(p_coarse)?;
1884c68be7a2SJeremy L Thompson     ///     let mut fine = ceed.vector(p_fine)?;
1885c68be7a2SJeremy L Thompson     ///     let basis_c_to_f =
1886c68be7a2SJeremy L Thompson     ///         ceed.basis_tensor_H1_Lagrange(1, 1, p_coarse, p_fine, QuadMode::GaussLobatto)?;
18879df49d7eSJed Brown     ///     for i in 0..p_coarse {
18889df49d7eSJed Brown     ///         coarse.set_value(0.0);
18899df49d7eSJed Brown     ///         {
18909df49d7eSJed Brown     ///             let mut array = coarse.view_mut();
18919df49d7eSJed Brown     ///             array[i] = 1.;
18929df49d7eSJed Brown     ///         }
1893c68be7a2SJeremy L Thompson     ///         basis_c_to_f.apply(
18949df49d7eSJed Brown     ///             1,
18959df49d7eSJed Brown     ///             TransposeMode::NoTranspose,
18969df49d7eSJed Brown     ///             EvalMode::Interp,
18979df49d7eSJed Brown     ///             &coarse,
18989df49d7eSJed Brown     ///             &mut fine,
1899c68be7a2SJeremy L Thompson     ///         )?;
19009df49d7eSJed Brown     ///         let array = fine.view();
19019df49d7eSJed Brown     ///         for j in 0..p_fine {
19029df49d7eSJed Brown     ///             interp_c_to_f[j * p_coarse + i] = array[j];
19039df49d7eSJed Brown     ///         }
19049df49d7eSJed Brown     ///     }
19059df49d7eSJed Brown     /// }
1906c68be7a2SJeremy L Thompson     /// let (op_mass_coarse, op_prolong, op_restrict) = op_mass_fine.create_multigrid_level_H1(
1907c68be7a2SJeremy L Thompson     ///     &multiplicity,
1908c68be7a2SJeremy L Thompson     ///     &ru_coarse,
1909c68be7a2SJeremy L Thompson     ///     &bu_coarse,
1910c68be7a2SJeremy L Thompson     ///     &interp_c_to_f,
1911c68be7a2SJeremy L Thompson     /// )?;
19129df49d7eSJed Brown     ///
19139df49d7eSJed Brown     /// // Coarse problem
19149df49d7eSJed Brown     /// u_coarse.set_value(1.0);
1915c68be7a2SJeremy L Thompson     /// op_mass_coarse.apply(&u_coarse, &mut v_coarse)?;
19169df49d7eSJed Brown     ///
19179df49d7eSJed Brown     /// // Check
191880a9ef05SNatalie Beams     /// let sum: Scalar = v_coarse.view().iter().sum();
19199df49d7eSJed Brown     /// assert!(
192080a9ef05SNatalie Beams     ///     (sum - 2.0).abs() < 10.0 * libceed::EPSILON,
19219df49d7eSJed Brown     ///     "Incorrect interval length computed"
19229df49d7eSJed Brown     /// );
19239df49d7eSJed Brown     ///
19249df49d7eSJed Brown     /// // Prolong
1925c68be7a2SJeremy L Thompson     /// op_prolong.apply(&u_coarse, &mut u_fine)?;
19269df49d7eSJed Brown     ///
19279df49d7eSJed Brown     /// // Fine problem
1928c68be7a2SJeremy L Thompson     /// op_mass_fine.apply(&u_fine, &mut v_fine)?;
19299df49d7eSJed Brown     ///
19309df49d7eSJed Brown     /// // Check
193180a9ef05SNatalie Beams     /// let sum: Scalar = v_fine.view().iter().sum();
19329df49d7eSJed Brown     /// assert!(
193380a9ef05SNatalie Beams     ///     (sum - 2.0).abs() < 10.0 * libceed::EPSILON,
19349df49d7eSJed Brown     ///     "Incorrect interval length computed"
19359df49d7eSJed Brown     /// );
19369df49d7eSJed Brown     ///
19379df49d7eSJed Brown     /// // Restrict
1938c68be7a2SJeremy L Thompson     /// op_restrict.apply(&v_fine, &mut v_coarse)?;
19399df49d7eSJed Brown     ///
19409df49d7eSJed Brown     /// // Check
194180a9ef05SNatalie Beams     /// let sum: Scalar = v_coarse.view().iter().sum();
19429df49d7eSJed Brown     /// assert!(
194380a9ef05SNatalie Beams     ///     (sum - 2.0).abs() < 10.0 * libceed::EPSILON,
19449df49d7eSJed Brown     ///     "Incorrect interval length computed"
19459df49d7eSJed Brown     /// );
1946c68be7a2SJeremy L Thompson     /// # Ok(())
1947c68be7a2SJeremy L Thompson     /// # }
19489df49d7eSJed Brown     /// ```
19499df49d7eSJed Brown     pub fn create_multigrid_level_H1(
19509df49d7eSJed Brown         &self,
19519df49d7eSJed Brown         p_mult_fine: &Vector,
19529df49d7eSJed Brown         rstr_coarse: &ElemRestriction,
19539df49d7eSJed Brown         basis_coarse: &Basis,
195480a9ef05SNatalie Beams         interpCtoF: &[Scalar],
19559df49d7eSJed Brown     ) -> crate::Result<(Operator, Operator, Operator)> {
19569df49d7eSJed Brown         let mut ptr_coarse = std::ptr::null_mut();
19579df49d7eSJed Brown         let mut ptr_prolong = std::ptr::null_mut();
19589df49d7eSJed Brown         let mut ptr_restrict = std::ptr::null_mut();
19599df49d7eSJed Brown         let ierr = unsafe {
19609df49d7eSJed Brown             bind_ceed::CeedOperatorMultigridLevelCreateH1(
19619df49d7eSJed Brown                 self.op_core.ptr,
19629df49d7eSJed Brown                 p_mult_fine.ptr,
19639df49d7eSJed Brown                 rstr_coarse.ptr,
19649df49d7eSJed Brown                 basis_coarse.ptr,
19659df49d7eSJed Brown                 interpCtoF.as_ptr(),
19669df49d7eSJed Brown                 &mut ptr_coarse,
19679df49d7eSJed Brown                 &mut ptr_prolong,
19689df49d7eSJed Brown                 &mut ptr_restrict,
19699df49d7eSJed Brown             )
19709df49d7eSJed Brown         };
19711142270cSJeremy L Thompson         self.op_core.check_error(ierr)?;
19721142270cSJeremy L Thompson         let op_coarse = Operator::from_raw(ptr_coarse)?;
19731142270cSJeremy L Thompson         let op_prolong = Operator::from_raw(ptr_prolong)?;
19741142270cSJeremy L Thompson         let op_restrict = Operator::from_raw(ptr_restrict)?;
19759df49d7eSJed Brown         Ok((op_coarse, op_prolong, op_restrict))
19769df49d7eSJed Brown     }
19779df49d7eSJed Brown }
19789df49d7eSJed Brown 
19799df49d7eSJed Brown // -----------------------------------------------------------------------------
19809df49d7eSJed Brown // Composite Operator
19819df49d7eSJed Brown // -----------------------------------------------------------------------------
19829df49d7eSJed Brown impl<'a> CompositeOperator<'a> {
19839df49d7eSJed Brown     // Constructor
19849df49d7eSJed Brown     pub fn create(ceed: &'a crate::Ceed) -> crate::Result<Self> {
19859df49d7eSJed Brown         let mut ptr = std::ptr::null_mut();
19869df49d7eSJed Brown         let ierr = unsafe { bind_ceed::CeedCompositeOperatorCreate(ceed.ptr, &mut ptr) };
19879df49d7eSJed Brown         ceed.check_error(ierr)?;
19889df49d7eSJed Brown         Ok(Self {
19891142270cSJeremy L Thompson             op_core: OperatorCore {
19901142270cSJeremy L Thompson                 ptr,
19911142270cSJeremy L Thompson                 _lifeline: PhantomData,
19921142270cSJeremy L Thompson             },
19939df49d7eSJed Brown         })
19949df49d7eSJed Brown     }
19959df49d7eSJed Brown 
19969df49d7eSJed Brown     /// Apply Operator to a vector
19979df49d7eSJed Brown     ///
19989df49d7eSJed Brown     /// * `input`  - Input Vector
19999df49d7eSJed Brown     /// * `output` - Output Vector
20009df49d7eSJed Brown     ///
20019df49d7eSJed Brown     /// ```
20029df49d7eSJed Brown     /// # use libceed::prelude::*;
2003*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
20049df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
20059df49d7eSJed Brown     /// let ne = 4;
20069df49d7eSJed Brown     /// let p = 3;
20079df49d7eSJed Brown     /// let q = 4;
20089df49d7eSJed Brown     /// let ndofs = p * ne - ne + 1;
20099df49d7eSJed Brown     ///
20109df49d7eSJed Brown     /// // Vectors
2011c68be7a2SJeremy L Thompson     /// let x = ceed.vector_from_slice(&[-1., -0.5, 0.0, 0.5, 1.0])?;
2012c68be7a2SJeremy L Thompson     /// let mut qdata_mass = ceed.vector(ne * q)?;
20139df49d7eSJed Brown     /// qdata_mass.set_value(0.0);
2014c68be7a2SJeremy L Thompson     /// let mut qdata_diff = ceed.vector(ne * q)?;
20159df49d7eSJed Brown     /// qdata_diff.set_value(0.0);
2016c68be7a2SJeremy L Thompson     /// let mut u = ceed.vector(ndofs)?;
20179df49d7eSJed Brown     /// u.set_value(1.0);
2018c68be7a2SJeremy L Thompson     /// let mut v = ceed.vector(ndofs)?;
20199df49d7eSJed Brown     /// v.set_value(0.0);
20209df49d7eSJed Brown     ///
20219df49d7eSJed Brown     /// // Restrictions
20229df49d7eSJed Brown     /// let mut indx: Vec<i32> = vec![0; 2 * ne];
20239df49d7eSJed Brown     /// for i in 0..ne {
20249df49d7eSJed Brown     ///     indx[2 * i + 0] = i as i32;
20259df49d7eSJed Brown     ///     indx[2 * i + 1] = (i + 1) as i32;
20269df49d7eSJed Brown     /// }
2027c68be7a2SJeremy L Thompson     /// let rx = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &indx)?;
20289df49d7eSJed Brown     /// let mut indu: Vec<i32> = vec![0; p * ne];
20299df49d7eSJed Brown     /// for i in 0..ne {
20309df49d7eSJed Brown     ///     indu[p * i + 0] = i as i32;
20319df49d7eSJed Brown     ///     indu[p * i + 1] = (i + 1) as i32;
20329df49d7eSJed Brown     ///     indu[p * i + 2] = (i + 2) as i32;
20339df49d7eSJed Brown     /// }
2034c68be7a2SJeremy L Thompson     /// let ru = ceed.elem_restriction(ne, 3, 1, 1, ndofs, MemType::Host, &indu)?;
20359df49d7eSJed Brown     /// let strides: [i32; 3] = [1, q as i32, q as i32];
2036c68be7a2SJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, q, 1, q * ne, strides)?;
20379df49d7eSJed Brown     ///
20389df49d7eSJed Brown     /// // Bases
2039c68be7a2SJeremy L Thompson     /// let bx = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
2040c68be7a2SJeremy L Thompson     /// let bu = ceed.basis_tensor_H1_Lagrange(1, 1, p, q, QuadMode::Gauss)?;
20419df49d7eSJed Brown     ///
20429df49d7eSJed Brown     /// // Build quadrature data
2043c68be7a2SJeremy L Thompson     /// let qf_build_mass = ceed.q_function_interior_by_name("Mass1DBuild")?;
2044c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build_mass, QFunctionOpt::None, QFunctionOpt::None)?
2045c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
2046c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
2047c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
2048c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata_mass)?;
20499df49d7eSJed Brown     ///
2050c68be7a2SJeremy L Thompson     /// let qf_build_diff = ceed.q_function_interior_by_name("Poisson1DBuild")?;
2051c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build_diff, QFunctionOpt::None, QFunctionOpt::None)?
2052c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
2053c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
2054c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
2055c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata_diff)?;
20569df49d7eSJed Brown     ///
20579df49d7eSJed Brown     /// // Application operator
2058c68be7a2SJeremy L Thompson     /// let qf_mass = ceed.q_function_interior_by_name("MassApply")?;
20599df49d7eSJed Brown     /// let op_mass = ceed
2060c68be7a2SJeremy L Thompson     ///     .operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?
2061c68be7a2SJeremy L Thompson     ///     .field("u", &ru, &bu, VectorOpt::Active)?
2062c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata_mass)?
2063c68be7a2SJeremy L Thompson     ///     .field("v", &ru, &bu, VectorOpt::Active)?;
20649df49d7eSJed Brown     ///
2065c68be7a2SJeremy L Thompson     /// let qf_diff = ceed.q_function_interior_by_name("Poisson1DApply")?;
20669df49d7eSJed Brown     /// let op_diff = ceed
2067c68be7a2SJeremy L Thompson     ///     .operator(&qf_diff, QFunctionOpt::None, QFunctionOpt::None)?
2068c68be7a2SJeremy L Thompson     ///     .field("du", &ru, &bu, VectorOpt::Active)?
2069c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata_diff)?
2070c68be7a2SJeremy L Thompson     ///     .field("dv", &ru, &bu, VectorOpt::Active)?;
20719df49d7eSJed Brown     ///
20729df49d7eSJed Brown     /// let op_composite = ceed
2073c68be7a2SJeremy L Thompson     ///     .composite_operator()?
2074c68be7a2SJeremy L Thompson     ///     .sub_operator(&op_mass)?
2075c68be7a2SJeremy L Thompson     ///     .sub_operator(&op_diff)?;
20769df49d7eSJed Brown     ///
20779df49d7eSJed Brown     /// v.set_value(0.0);
2078c68be7a2SJeremy L Thompson     /// op_composite.apply(&u, &mut v)?;
20799df49d7eSJed Brown     ///
20809df49d7eSJed Brown     /// // Check
208180a9ef05SNatalie Beams     /// let sum: Scalar = v.view().iter().sum();
20829df49d7eSJed Brown     /// assert!(
208380a9ef05SNatalie Beams     ///     (sum - 2.0).abs() < 10.0 * libceed::EPSILON,
20849df49d7eSJed Brown     ///     "Incorrect interval length computed"
20859df49d7eSJed Brown     /// );
2086c68be7a2SJeremy L Thompson     /// # Ok(())
2087c68be7a2SJeremy L Thompson     /// # }
20889df49d7eSJed Brown     /// ```
20899df49d7eSJed Brown     pub fn apply(&self, input: &Vector, output: &mut Vector) -> crate::Result<i32> {
20909df49d7eSJed Brown         self.op_core.apply(input, output)
20919df49d7eSJed Brown     }
20929df49d7eSJed Brown 
20939df49d7eSJed Brown     /// Apply Operator to a vector and add result to output vector
20949df49d7eSJed Brown     ///
20959df49d7eSJed Brown     /// * `input`  - Input Vector
20969df49d7eSJed Brown     /// * `output` - Output Vector
20979df49d7eSJed Brown     ///
20989df49d7eSJed Brown     /// ```
20999df49d7eSJed Brown     /// # use libceed::prelude::*;
2100*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
21019df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
21029df49d7eSJed Brown     /// let ne = 4;
21039df49d7eSJed Brown     /// let p = 3;
21049df49d7eSJed Brown     /// let q = 4;
21059df49d7eSJed Brown     /// let ndofs = p * ne - ne + 1;
21069df49d7eSJed Brown     ///
21079df49d7eSJed Brown     /// // Vectors
2108c68be7a2SJeremy L Thompson     /// let x = ceed.vector_from_slice(&[-1., -0.5, 0.0, 0.5, 1.0])?;
2109c68be7a2SJeremy L Thompson     /// let mut qdata_mass = ceed.vector(ne * q)?;
21109df49d7eSJed Brown     /// qdata_mass.set_value(0.0);
2111c68be7a2SJeremy L Thompson     /// let mut qdata_diff = ceed.vector(ne * q)?;
21129df49d7eSJed Brown     /// qdata_diff.set_value(0.0);
2113c68be7a2SJeremy L Thompson     /// let mut u = ceed.vector(ndofs)?;
21149df49d7eSJed Brown     /// u.set_value(1.0);
2115c68be7a2SJeremy L Thompson     /// let mut v = ceed.vector(ndofs)?;
21169df49d7eSJed Brown     /// v.set_value(0.0);
21179df49d7eSJed Brown     ///
21189df49d7eSJed Brown     /// // Restrictions
21199df49d7eSJed Brown     /// let mut indx: Vec<i32> = vec![0; 2 * ne];
21209df49d7eSJed Brown     /// for i in 0..ne {
21219df49d7eSJed Brown     ///     indx[2 * i + 0] = i as i32;
21229df49d7eSJed Brown     ///     indx[2 * i + 1] = (i + 1) as i32;
21239df49d7eSJed Brown     /// }
2124c68be7a2SJeremy L Thompson     /// let rx = ceed.elem_restriction(ne, 2, 1, 1, ne + 1, MemType::Host, &indx)?;
21259df49d7eSJed Brown     /// let mut indu: Vec<i32> = vec![0; p * ne];
21269df49d7eSJed Brown     /// for i in 0..ne {
21279df49d7eSJed Brown     ///     indu[p * i + 0] = i as i32;
21289df49d7eSJed Brown     ///     indu[p * i + 1] = (i + 1) as i32;
21299df49d7eSJed Brown     ///     indu[p * i + 2] = (i + 2) as i32;
21309df49d7eSJed Brown     /// }
2131c68be7a2SJeremy L Thompson     /// let ru = ceed.elem_restriction(ne, 3, 1, 1, ndofs, MemType::Host, &indu)?;
21329df49d7eSJed Brown     /// let strides: [i32; 3] = [1, q as i32, q as i32];
2133c68be7a2SJeremy L Thompson     /// let rq = ceed.strided_elem_restriction(ne, q, 1, q * ne, strides)?;
21349df49d7eSJed Brown     ///
21359df49d7eSJed Brown     /// // Bases
2136c68be7a2SJeremy L Thompson     /// let bx = ceed.basis_tensor_H1_Lagrange(1, 1, 2, q, QuadMode::Gauss)?;
2137c68be7a2SJeremy L Thompson     /// let bu = ceed.basis_tensor_H1_Lagrange(1, 1, p, q, QuadMode::Gauss)?;
21389df49d7eSJed Brown     ///
21399df49d7eSJed Brown     /// // Build quadrature data
2140c68be7a2SJeremy L Thompson     /// let qf_build_mass = ceed.q_function_interior_by_name("Mass1DBuild")?;
2141c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build_mass, QFunctionOpt::None, QFunctionOpt::None)?
2142c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
2143c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
2144c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
2145c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata_mass)?;
21469df49d7eSJed Brown     ///
2147c68be7a2SJeremy L Thompson     /// let qf_build_diff = ceed.q_function_interior_by_name("Poisson1DBuild")?;
2148c68be7a2SJeremy L Thompson     /// ceed.operator(&qf_build_diff, QFunctionOpt::None, QFunctionOpt::None)?
2149c68be7a2SJeremy L Thompson     ///     .field("dx", &rx, &bx, VectorOpt::Active)?
2150c68be7a2SJeremy L Thompson     ///     .field("weights", ElemRestrictionOpt::None, &bx, VectorOpt::None)?
2151c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, VectorOpt::Active)?
2152c68be7a2SJeremy L Thompson     ///     .apply(&x, &mut qdata_diff)?;
21539df49d7eSJed Brown     ///
21549df49d7eSJed Brown     /// // Application operator
2155c68be7a2SJeremy L Thompson     /// let qf_mass = ceed.q_function_interior_by_name("MassApply")?;
21569df49d7eSJed Brown     /// let op_mass = ceed
2157c68be7a2SJeremy L Thompson     ///     .operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?
2158c68be7a2SJeremy L Thompson     ///     .field("u", &ru, &bu, VectorOpt::Active)?
2159c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata_mass)?
2160c68be7a2SJeremy L Thompson     ///     .field("v", &ru, &bu, VectorOpt::Active)?;
21619df49d7eSJed Brown     ///
2162c68be7a2SJeremy L Thompson     /// let qf_diff = ceed.q_function_interior_by_name("Poisson1DApply")?;
21639df49d7eSJed Brown     /// let op_diff = ceed
2164c68be7a2SJeremy L Thompson     ///     .operator(&qf_diff, QFunctionOpt::None, QFunctionOpt::None)?
2165c68be7a2SJeremy L Thompson     ///     .field("du", &ru, &bu, VectorOpt::Active)?
2166c68be7a2SJeremy L Thompson     ///     .field("qdata", &rq, BasisOpt::Collocated, &qdata_diff)?
2167c68be7a2SJeremy L Thompson     ///     .field("dv", &ru, &bu, VectorOpt::Active)?;
21689df49d7eSJed Brown     ///
21699df49d7eSJed Brown     /// let op_composite = ceed
2170c68be7a2SJeremy L Thompson     ///     .composite_operator()?
2171c68be7a2SJeremy L Thompson     ///     .sub_operator(&op_mass)?
2172c68be7a2SJeremy L Thompson     ///     .sub_operator(&op_diff)?;
21739df49d7eSJed Brown     ///
21749df49d7eSJed Brown     /// v.set_value(1.0);
2175c68be7a2SJeremy L Thompson     /// op_composite.apply_add(&u, &mut v)?;
21769df49d7eSJed Brown     ///
21779df49d7eSJed Brown     /// // Check
217880a9ef05SNatalie Beams     /// let sum: Scalar = v.view().iter().sum();
21799df49d7eSJed Brown     /// assert!(
218080a9ef05SNatalie Beams     ///     (sum - (2.0 + ndofs as Scalar)).abs() < 10.0 * libceed::EPSILON,
21819df49d7eSJed Brown     ///     "Incorrect interval length computed"
21829df49d7eSJed Brown     /// );
2183c68be7a2SJeremy L Thompson     /// # Ok(())
2184c68be7a2SJeremy L Thompson     /// # }
21859df49d7eSJed Brown     /// ```
21869df49d7eSJed Brown     pub fn apply_add(&self, input: &Vector, output: &mut Vector) -> crate::Result<i32> {
21879df49d7eSJed Brown         self.op_core.apply_add(input, output)
21889df49d7eSJed Brown     }
21899df49d7eSJed Brown 
21909df49d7eSJed Brown     /// Add a sub-Operator to a Composite Operator
21919df49d7eSJed Brown     ///
21929df49d7eSJed Brown     /// * `subop` - Sub-Operator
21939df49d7eSJed Brown     ///
21949df49d7eSJed Brown     /// ```
21959df49d7eSJed Brown     /// # use libceed::prelude::*;
2196*89d15d5fSJeremy L Thompson     /// # fn main() -> Result<()> {
21979df49d7eSJed Brown     /// # let ceed = libceed::Ceed::default_init();
2198c68be7a2SJeremy L Thompson     /// let mut op = ceed.composite_operator()?;
21999df49d7eSJed Brown     ///
2200c68be7a2SJeremy L Thompson     /// let qf_mass = ceed.q_function_interior_by_name("MassApply")?;
2201c68be7a2SJeremy L Thompson     /// let op_mass = ceed.operator(&qf_mass, QFunctionOpt::None, QFunctionOpt::None)?;
2202c68be7a2SJeremy L Thompson     /// op = op.sub_operator(&op_mass)?;
22039df49d7eSJed Brown     ///
2204c68be7a2SJeremy L Thompson     /// let qf_diff = ceed.q_function_interior_by_name("Poisson1DApply")?;
2205c68be7a2SJeremy L Thompson     /// let op_diff = ceed.operator(&qf_diff, QFunctionOpt::None, QFunctionOpt::None)?;
2206c68be7a2SJeremy L Thompson     /// op = op.sub_operator(&op_diff)?;
2207c68be7a2SJeremy L Thompson     /// # Ok(())
2208c68be7a2SJeremy L Thompson     /// # }
22099df49d7eSJed Brown     /// ```
22109df49d7eSJed Brown     #[allow(unused_mut)]
22119df49d7eSJed Brown     pub fn sub_operator(mut self, subop: &Operator) -> crate::Result<Self> {
22129df49d7eSJed Brown         let ierr =
22139df49d7eSJed Brown             unsafe { bind_ceed::CeedCompositeOperatorAddSub(self.op_core.ptr, subop.op_core.ptr) };
22141142270cSJeremy L Thompson         self.op_core.check_error(ierr)?;
22159df49d7eSJed Brown         Ok(self)
22169df49d7eSJed Brown     }
22179df49d7eSJed Brown 
22189df49d7eSJed Brown     /// Assemble the diagonal of a square linear Operator
22199df49d7eSJed Brown     ///
22209df49d7eSJed Brown     /// This overwrites a Vector with the diagonal of a linear Operator.
22219df49d7eSJed Brown     ///
22229df49d7eSJed Brown     /// Note: Currently only non-composite Operators with a single field and
22239df49d7eSJed Brown     ///      composite Operators with single field sub-operators are supported.
22249df49d7eSJed Brown     ///
22259df49d7eSJed Brown     /// * `op`        - Operator to assemble QFunction
22269df49d7eSJed Brown     /// * `assembled` - Vector to store assembled Operator diagonal
22279df49d7eSJed Brown     pub fn linear_asssemble_diagonal(&self, assembled: &mut Vector) -> crate::Result<i32> {
22289df49d7eSJed Brown         self.op_core.linear_assemble_add_diagonal(assembled)
22299df49d7eSJed Brown     }
22309df49d7eSJed Brown 
22319df49d7eSJed Brown     /// Assemble the point block diagonal of a square linear Operator
22329df49d7eSJed Brown     ///
22339df49d7eSJed Brown     /// This overwrites a Vector with the point block diagonal of a linear
22349df49d7eSJed Brown     ///   Operator.
22359df49d7eSJed Brown     ///
22369df49d7eSJed Brown     /// Note: Currently only non-composite Operators with a single field and
22379df49d7eSJed Brown     ///      composite Operators with single field sub-operators are supported.
22389df49d7eSJed Brown     ///
22399df49d7eSJed Brown     /// * `op`        - Operator to assemble QFunction
22409df49d7eSJed Brown     /// * `assembled` - Vector to store assembled Operator diagonal
22419df49d7eSJed Brown     pub fn linear_assemble_add_diagonal(&self, assembled: &mut Vector) -> crate::Result<i32> {
22429df49d7eSJed Brown         self.op_core.linear_assemble_add_diagonal(assembled)
22439df49d7eSJed Brown     }
22449df49d7eSJed Brown 
22459df49d7eSJed Brown     /// Assemble the diagonal of a square linear Operator
22469df49d7eSJed Brown     ///
22479df49d7eSJed Brown     /// This overwrites a Vector with the diagonal of a linear Operator.
22489df49d7eSJed Brown     ///
22499df49d7eSJed Brown     /// Note: Currently only non-composite Operators with a single field and
22509df49d7eSJed Brown     ///      composite Operators with single field sub-operators are supported.
22519df49d7eSJed Brown     ///
22529df49d7eSJed Brown     /// * `op`        - Operator to assemble QFunction
22539df49d7eSJed Brown     /// * `assembled` - Vector to store assembled CeedOperator point block
22549df49d7eSJed Brown     ///                   diagonal, provided in row-major form with an
22559df49d7eSJed Brown     ///                   `ncomp * ncomp` block at each node. The dimensions of
22569df49d7eSJed Brown     ///                   this vector are derived from the active vector for
22579df49d7eSJed Brown     ///                   the CeedOperator. The array has shape
22589df49d7eSJed Brown     ///                   `[nodes, component out, component in]`.
22599df49d7eSJed Brown     pub fn linear_assemble_point_block_diagonal(
22609df49d7eSJed Brown         &self,
22619df49d7eSJed Brown         assembled: &mut Vector,
22629df49d7eSJed Brown     ) -> crate::Result<i32> {
22639df49d7eSJed Brown         self.op_core.linear_assemble_add_diagonal(assembled)
22649df49d7eSJed Brown     }
22659df49d7eSJed Brown 
22669df49d7eSJed Brown     /// Assemble the diagonal of a square linear Operator
22679df49d7eSJed Brown     ///
22689df49d7eSJed Brown     /// This sums into a Vector with the diagonal of a linear Operator.
22699df49d7eSJed Brown     ///
22709df49d7eSJed Brown     /// Note: Currently only non-composite Operators with a single field and
22719df49d7eSJed Brown     ///      composite Operators with single field sub-operators are supported.
22729df49d7eSJed Brown     ///
22739df49d7eSJed Brown     /// * `op`        - Operator to assemble QFunction
22749df49d7eSJed Brown     /// * `assembled` - Vector to store assembled CeedOperator point block
22759df49d7eSJed Brown     ///                   diagonal, provided in row-major form with an
22769df49d7eSJed Brown     ///                   `ncomp * ncomp` block at each node. The dimensions of
22779df49d7eSJed Brown     ///                   this vector are derived from the active vector for
22789df49d7eSJed Brown     ///                   the CeedOperator. The array has shape
22799df49d7eSJed Brown     ///                   `[nodes, component out, component in]`.
22809df49d7eSJed Brown     pub fn linear_assemble_add_point_block_diagonal(
22819df49d7eSJed Brown         &self,
22829df49d7eSJed Brown         assembled: &mut Vector,
22839df49d7eSJed Brown     ) -> crate::Result<i32> {
22849df49d7eSJed Brown         self.op_core.linear_assemble_add_diagonal(assembled)
22859df49d7eSJed Brown     }
22869df49d7eSJed Brown }
22879df49d7eSJed Brown 
22889df49d7eSJed Brown // -----------------------------------------------------------------------------
2289