rust/src/librustc_trans/trans/closure.rs

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// Copyright 2012-2014 The Rust Project Developers. See the COPYRIGHT
// file at the top-level directory of this distribution and at
// http://rust-lang.org/COPYRIGHT.
//
// Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
// http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
// <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
// option. This file may not be copied, modified, or distributed
// except according to those terms.
use back::link::mangle_internal_name_by_path_and_seq;
use middle::mem_categorization::Typer;
use trans::adt;
use trans::base::*;
use trans::build::*;
use trans::cleanup::{CleanupMethods, ScopeId};
use trans::common::*;
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use trans::datum::{Datum, rvalue_scratch_datum};
use trans::datum::{Rvalue, ByValue};
use trans::debuginfo;
use trans::expr;
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use trans::monomorphize::{self, MonoId};
use trans::type_of::*;
use middle::ty::{self, ClosureTyper};
use middle::subst::{Substs};
use session::config::FullDebugInfo;
use syntax::ast;
use syntax::ast_util;
fn load_closure_environment<'blk, 'tcx>(bcx: Block<'blk, 'tcx>,
arg_scope_id: ScopeId,
freevars: &[ty::Freevar])
-> Block<'blk, 'tcx>
{
let _icx = push_ctxt("closure::load_closure_environment");
// Special case for small by-value selfs.
let closure_id = ast_util::local_def(bcx.fcx.id);
let self_type = self_type_for_closure(bcx.ccx(), closure_id,
node_id_type(bcx, closure_id.node));
let kind = kind_for_closure(bcx.ccx(), closure_id);
let llenv = if kind == ty::FnOnceClosureKind &&
!arg_is_indirect(bcx.ccx(), self_type) {
let datum = rvalue_scratch_datum(bcx,
self_type,
"closure_env");
store_ty(bcx, bcx.fcx.llenv.unwrap(), datum.val, self_type);
datum.val
} else {
bcx.fcx.llenv.unwrap()
};
// Store the pointer to closure data in an alloca for debug info because that's what the
// llvm.dbg.declare intrinsic expects
let env_pointer_alloca = if bcx.sess().opts.debuginfo == FullDebugInfo {
let alloc = alloca(bcx, val_ty(llenv), "__debuginfo_env_ptr");
Store(bcx, llenv, alloc);
Some(alloc)
} else {
None
};
for (i, freevar) in freevars.iter().enumerate() {
let upvar_id = ty::UpvarId { var_id: freevar.def.local_node_id(),
closure_expr_id: closure_id.node };
let upvar_capture = bcx.tcx().upvar_capture(upvar_id).unwrap();
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let mut upvar_ptr = GEPi(bcx, llenv, &[0, i]);
let captured_by_ref = match upvar_capture {
ty::UpvarCapture::ByValue => false,
ty::UpvarCapture::ByRef(..) => {
upvar_ptr = Load(bcx, upvar_ptr);
true
}
};
let def_id = freevar.def.def_id();
bcx.fcx.llupvars.borrow_mut().insert(def_id.node, upvar_ptr);
if kind == ty::FnOnceClosureKind && !captured_by_ref {
bcx.fcx.schedule_drop_mem(arg_scope_id,
upvar_ptr,
node_id_type(bcx, def_id.node))
}
if let Some(env_pointer_alloca) = env_pointer_alloca {
debuginfo::create_captured_var_metadata(
bcx,
def_id.node,
env_pointer_alloca,
i,
captured_by_ref,
freevar.span);
}
}
bcx
}
pub enum ClosureEnv<'a> {
NotClosure,
Closure(&'a [ty::Freevar]),
}
impl<'a> ClosureEnv<'a> {
pub fn load<'blk,'tcx>(self, bcx: Block<'blk, 'tcx>, arg_scope: ScopeId)
-> Block<'blk, 'tcx>
{
match self {
ClosureEnv::NotClosure => bcx,
ClosureEnv::Closure(freevars) => {
if freevars.is_empty() {
bcx
} else {
load_closure_environment(bcx, arg_scope, freevars)
}
}
}
}
}
/// Returns the LLVM function declaration for a closure, creating it if
/// necessary. If the ID does not correspond to a closure ID, returns None.
pub fn get_or_create_declaration_if_closure<'a, 'tcx>(ccx: &CrateContext<'a, 'tcx>,
closure_id: ast::DefId,
substs: &Substs<'tcx>)
-> Option<Datum<'tcx, Rvalue>> {
if !ccx.tcx().closures.borrow().contains_key(&closure_id) {
// Not a closure.
return None
}
let function_type = ty::node_id_to_type(ccx.tcx(), closure_id.node);
let function_type = monomorphize::apply_param_substs(ccx.tcx(), substs, &function_type);
// Normalize type so differences in regions and typedefs don't cause
// duplicate declarations
let function_type = erase_regions(ccx.tcx(), &function_type);
let params = match function_type.sty {
ty::ty_closure(_, _, ref substs) => substs.types.clone(),
_ => unreachable!()
};
let mono_id = MonoId {
def: closure_id,
params: params
};
match ccx.closure_vals().borrow().get(&mono_id) {
Some(&llfn) => {
debug!("get_or_create_declaration_if_closure(): found closure");
return Some(Datum::new(llfn, function_type, Rvalue::new(ByValue)))
}
None => {}
}
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let symbol = ccx.tcx().map.with_path(closure_id.node, |path| {
mangle_internal_name_by_path_and_seq(path, "closure")
});
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let llfn = decl_internal_rust_fn(ccx, function_type, &symbol[]);
// set an inline hint for all closures
set_inline_hint(llfn);
debug!("get_or_create_declaration_if_closure(): inserting new \
closure {:?} (type {})",
mono_id,
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ccx.tn().type_to_string(val_ty(llfn)));
ccx.closure_vals().borrow_mut().insert(mono_id, llfn);
Some(Datum::new(llfn, function_type, Rvalue::new(ByValue)))
}
pub fn trans_closure_expr<'blk, 'tcx>(mut bcx: Block<'blk, 'tcx>,
decl: &ast::FnDecl,
body: &ast::Block,
id: ast::NodeId,
dest: expr::Dest)
-> Block<'blk, 'tcx>
{
let _icx = push_ctxt("closure::trans_closure");
debug!("trans_closure()");
let closure_id = ast_util::local_def(id);
let llfn = get_or_create_declaration_if_closure(
bcx.ccx(),
closure_id,
bcx.fcx.param_substs).unwrap();
// Get the type of this closure. Use the current `param_substs` as
// the closure substitutions. This makes sense because the closure
// takes the same set of type arguments as the enclosing fn, and
// this function (`trans_closure`) is invoked at the point
// of the closure expression.
let typer = NormalizingClosureTyper::new(bcx.tcx());
let function_type = typer.closure_type(closure_id, bcx.fcx.param_substs);
let freevars: Vec<ty::Freevar> =
ty::with_freevars(bcx.tcx(), id, |fv| fv.iter().map(|&fv| fv).collect());
let sig = ty::erase_late_bound_regions(bcx.tcx(), &function_type.sig);
trans_closure(bcx.ccx(),
decl,
body,
llfn.val,
bcx.fcx.param_substs,
id,
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&[],
sig.output,
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function_type.abi,
ClosureEnv::Closure(&freevars[]));
// Don't hoist this to the top of the function. It's perfectly legitimate
// to have a zero-size closure (in which case dest will be `Ignore`) and
// we must still generate the closure body.
let dest_addr = match dest {
expr::SaveIn(p) => p,
expr::Ignore => {
debug!("trans_closure() ignoring result");
return bcx
}
};
let repr = adt::represent_type(bcx.ccx(), node_id_type(bcx, id));
// Create the closure.
for (i, freevar) in freevars.iter().enumerate() {
let datum = expr::trans_local_var(bcx, freevar.def);
let upvar_slot_dest = adt::trans_field_ptr(bcx,
&*repr,
dest_addr,
0,
i);
let upvar_id = ty::UpvarId { var_id: freevar.def.local_node_id(),
closure_expr_id: id };
let upvar_capture = bcx.tcx().upvar_capture(upvar_id).unwrap();
match upvar_capture {
ty::UpvarCapture::ByValue => {
bcx = datum.store_to(bcx, upvar_slot_dest);
}
ty::UpvarCapture::ByRef(..) => {
Store(bcx, datum.to_llref(), upvar_slot_dest);
}
}
}
adt::trans_set_discr(bcx, &*repr, dest_addr, 0);
bcx
}