forked from M-Labs/nac3
artiq: reimplement reformat_rpc_arg for ndarray
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9b2e933405
commit
121f45279e
@ -1,12 +1,11 @@
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use nac3core::{
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codegen::{
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classes::{
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ArrayLikeIndexer, ArrayLikeValue, ArraySliceValue, ListValue, NDArrayType,
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NDArrayValue, RangeValue, UntypedArrayLikeAccessor,
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},
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classes::{ListValue, NDArrayValue, RangeValue, UntypedArrayLikeAccessor},
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expr::{destructure_range, gen_call},
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irrt::call_ndarray_calc_size,
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llvm_intrinsics::{call_int_smax, call_memcpy_generic, call_stackrestore, call_stacksave},
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llvm_intrinsics::{call_int_smax, call_stackrestore, call_stacksave},
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model::*,
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object::{any::AnyObject, ndarray::NDArrayObject},
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stmt::{gen_block, gen_for_callback_incrementing, gen_if_callback, gen_with},
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CodeGenContext, CodeGenerator,
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},
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@ -20,7 +19,7 @@ use nac3parser::ast::{Expr, ExprKind, Located, Stmt, StmtKind, StrRef};
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use inkwell::{
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context::Context,
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module::Linkage,
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types::{BasicType, IntType},
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types::IntType,
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values::{BasicValueEnum, PointerValue, StructValue},
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AddressSpace, IntPredicate,
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};
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@ -456,58 +455,41 @@ fn format_rpc_arg<'ctx>(
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// NAC3: NDArray = { usize, usize*, T* }
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// libproto_artiq: NDArray = [data[..], dim_sz[..]]
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let llvm_i1 = ctx.ctx.bool_type();
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let llvm_usize = generator.get_size_type(ctx.ctx);
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let ndarray = AnyObject { ty: arg_ty, value: arg };
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let ndarray = NDArrayObject::from_object(generator, ctx, ndarray);
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let (elem_ty, _) = unpack_ndarray_var_tys(&mut ctx.unifier, arg_ty);
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let llvm_arg_ty =
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NDArrayType::new(generator, ctx.ctx, ctx.get_llvm_type(generator, elem_ty));
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let llvm_arg = NDArrayValue::from_ptr_val(arg.into_pointer_value(), llvm_usize, None);
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let dtype = ctx.get_llvm_type(generator, ndarray.dtype);
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let ndims = ndarray.ndims_llvm(generator, ctx.ctx);
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let llvm_usize_sizeof = ctx
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.builder
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.build_int_truncate_or_bit_cast(llvm_arg_ty.size_type().size_of(), llvm_usize, "")
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.unwrap();
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let llvm_pdata_sizeof = ctx
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.builder
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.build_int_truncate_or_bit_cast(
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llvm_arg_ty.element_type().ptr_type(AddressSpace::default()).size_of(),
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llvm_usize,
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"",
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)
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.unwrap();
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// `ndarray.data` is possibly not contiguous, and we need it to be contiguous for
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// the reader.
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let carray = ndarray.make_contiguous_ndarray(generator, ctx, Any(dtype));
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let dims_buf_sz =
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ctx.builder.build_int_mul(llvm_arg.load_ndims(ctx), llvm_usize_sizeof, "").unwrap();
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let sizeof_sizet = Int(SizeT).sizeof(generator, ctx.ctx);
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let sizeof_sizet = Int(SizeT).truncate_or_bit_cast(generator, ctx, sizeof_sizet);
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let buffer_size =
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ctx.builder.build_int_add(dims_buf_sz, llvm_pdata_sizeof, "").unwrap();
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let sizeof_pdata = Ptr(Any(dtype)).sizeof(generator, ctx.ctx);
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let sizeof_pdata = Int(SizeT).truncate_or_bit_cast(generator, ctx, sizeof_pdata);
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let buffer = ctx.builder.build_array_alloca(llvm_i8, buffer_size, "rpc.arg").unwrap();
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let buffer = ArraySliceValue::from_ptr_val(buffer, buffer_size, Some("rpc.arg"));
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let sizeof_buf_shape = sizeof_sizet.mul(ctx, ndims);
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let sizeof_buf = sizeof_buf_shape.add(ctx, sizeof_pdata);
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let ppdata = generator.gen_var_alloc(ctx, llvm_arg_ty.element_type(), None).unwrap();
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ctx.builder.build_store(ppdata, llvm_arg.data().base_ptr(ctx, generator)).unwrap();
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// buf = { data: void*, shape: [size_t; ndims]; }
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let buf = Int(Byte).array_alloca(generator, ctx, sizeof_buf.value);
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let buf_data = buf;
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let buf_shape = buf_data.offset(ctx, sizeof_pdata.value);
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call_memcpy_generic(
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ctx,
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buffer.base_ptr(ctx, generator),
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ppdata,
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llvm_pdata_sizeof,
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llvm_i1.const_zero(),
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);
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// Write to `buf->data`
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let carray_data = carray.get(generator, ctx, |f| f.data); // has type Ptr<Any>
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let carray_data = carray_data.pointer_cast(generator, ctx, Int(Byte));
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buf_data.copy_from(generator, ctx, carray_data, sizeof_pdata.value);
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let pbuffer_dims_begin =
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unsafe { buffer.ptr_offset_unchecked(ctx, generator, &llvm_pdata_sizeof, None) };
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call_memcpy_generic(
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ctx,
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pbuffer_dims_begin,
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llvm_arg.dim_sizes().base_ptr(ctx, generator),
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dims_buf_sz,
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llvm_i1.const_zero(),
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);
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// Write to `buf->shape`
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let carray_shape = ndarray.instance.get(generator, ctx, |f| f.shape);
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let carray_shape_i8 = carray_shape.pointer_cast(generator, ctx, Int(Byte));
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buf_shape.copy_from(generator, ctx, carray_shape_i8, sizeof_buf_shape.value);
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buffer.base_ptr(ctx, generator)
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buf.value
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}
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_ => {
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