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1 // Copyright 2015 The Rust Project Developers. See the COPYRIGHT
2 // file at the top-level directory of this distribution and at
3 // http://rust-lang.org/COPYRIGHT.
4 //
5 // Licensed under the Apache License, Version 2.0 <LICENSE-APACHE or
6 // http://www.apache.org/licenses/LICENSE-2.0> or the MIT license
7 // <LICENSE-MIT or http://opensource.org/licenses/MIT>, at your
8 // option. This file may not be copied, modified, or distributed
9 // except according to those terms.
10
11 use std::cmp::min;
12 use std::borrow::Cow;
13 use std::iter::{repeat, ExactSizeIterator};
14
15 use syntax::{ast, ptr};
16 use syntax::codemap::{BytePos, CodeMap, Span};
17 use syntax::parse::classify;
18
19 use spanned::Spanned;
20 use chains::rewrite_chain;
21 use codemap::{LineRangeUtils, SpanUtils};
22 use comment::{combine_strs_with_missing_comments, contains_comment, recover_comment_removed,
23               rewrite_comment, rewrite_missing_comment, FindUncommented};
24 use config::{Config, ControlBraceStyle, IndentStyle, MultilineStyle, Style};
25 use items::{span_hi_for_arg, span_lo_for_arg};
26 use lists::{definitive_tactic, itemize_list, shape_for_tactic, struct_lit_formatting,
27             struct_lit_shape, struct_lit_tactic, write_list, DefinitiveListTactic, ListFormatting,
28             ListItem, ListTactic, Separator, SeparatorPlace, SeparatorTactic};
29 use macros::{rewrite_macro, MacroArg, MacroPosition};
30 use patterns::{can_be_overflowed_pat, TuplePatField};
31 use rewrite::{Rewrite, RewriteContext};
32 use shape::{Indent, Shape};
33 use string::{rewrite_string, StringFormat};
34 use types::{can_be_overflowed_type, rewrite_path, PathContext};
35 use utils::{colon_spaces, contains_skip, extra_offset, first_line_width, inner_attributes,
36             last_line_extendable, last_line_width, left_most_sub_expr, mk_sp, outer_attributes,
37             paren_overhead, ptr_vec_to_ref_vec, semicolon_for_stmt, stmt_expr,
38             trimmed_last_line_width};
39 use vertical::rewrite_with_alignment;
40 use visitor::FmtVisitor;
41
42 impl Rewrite for ast::Expr {
43     fn rewrite(&self, context: &RewriteContext, shape: Shape) -> Option<String> {
44         format_expr(self, ExprType::SubExpression, context, shape)
45     }
46 }
47
48 #[derive(Copy, Clone, PartialEq)]
49 pub enum ExprType {
50     Statement,
51     SubExpression,
52 }
53
54 pub fn format_expr(
55     expr: &ast::Expr,
56     expr_type: ExprType,
57     context: &RewriteContext,
58     shape: Shape,
59 ) -> Option<String> {
60     skip_out_of_file_lines_range!(context, expr.span);
61
62     if contains_skip(&*expr.attrs) {
63         return Some(context.snippet(expr.span()));
64     }
65
66     let expr_rw = match expr.node {
67         ast::ExprKind::Array(ref expr_vec) => rewrite_array(
68             expr_vec.iter().map(|e| &**e),
69             mk_sp(context.codemap.span_after(expr.span, "["), expr.span.hi()),
70             context,
71             shape,
72             false,
73         ),
74         ast::ExprKind::Lit(ref l) => rewrite_literal(context, l, shape),
75         ast::ExprKind::Call(ref callee, ref args) => {
76             let inner_span = mk_sp(callee.span.hi(), expr.span.hi());
77             let callee_str = callee.rewrite(context, shape)?;
78             rewrite_call(context, &callee_str, &args, inner_span, shape)
79         }
80         ast::ExprKind::Paren(ref subexpr) => rewrite_paren(context, subexpr, shape),
81         ast::ExprKind::Binary(ref op, ref lhs, ref rhs) => {
82             // FIXME: format comments between operands and operator
83             rewrite_pair(
84                 &**lhs,
85                 &**rhs,
86                 "",
87                 &format!(" {} ", context.snippet(op.span)),
88                 "",
89                 context,
90                 shape,
91                 context.config.binop_separator(),
92             )
93         }
94         ast::ExprKind::Unary(ref op, ref subexpr) => rewrite_unary_op(context, op, subexpr, shape),
95         ast::ExprKind::Struct(ref path, ref fields, ref base) => rewrite_struct_lit(
96             context,
97             path,
98             fields,
99             base.as_ref().map(|e| &**e),
100             expr.span,
101             shape,
102         ),
103         ast::ExprKind::Tup(ref items) => {
104             rewrite_tuple(context, &ptr_vec_to_ref_vec(&items), expr.span, shape)
105         }
106         ast::ExprKind::If(..) |
107         ast::ExprKind::IfLet(..) |
108         ast::ExprKind::ForLoop(..) |
109         ast::ExprKind::Loop(..) |
110         ast::ExprKind::While(..) |
111         ast::ExprKind::WhileLet(..) => to_control_flow(expr, expr_type)
112             .and_then(|control_flow| control_flow.rewrite(context, shape)),
113         ast::ExprKind::Block(ref block) => {
114             match expr_type {
115                 ExprType::Statement => {
116                     if is_unsafe_block(block) {
117                         block.rewrite(context, shape)
118                     } else if let rw @ Some(_) = rewrite_empty_block(context, block, shape) {
119                         // Rewrite block without trying to put it in a single line.
120                         rw
121                     } else {
122                         let prefix = block_prefix(context, block, shape)?;
123                         rewrite_block_with_visitor(context, &prefix, block, shape)
124                     }
125                 }
126                 ExprType::SubExpression => block.rewrite(context, shape),
127             }
128         }
129         ast::ExprKind::Match(ref cond, ref arms) => {
130             rewrite_match(context, cond, arms, shape, expr.span, &expr.attrs)
131         }
132         ast::ExprKind::Path(ref qself, ref path) => {
133             rewrite_path(context, PathContext::Expr, qself.as_ref(), path, shape)
134         }
135         ast::ExprKind::Assign(ref lhs, ref rhs) => {
136             rewrite_assignment(context, lhs, rhs, None, shape)
137         }
138         ast::ExprKind::AssignOp(ref op, ref lhs, ref rhs) => {
139             rewrite_assignment(context, lhs, rhs, Some(op), shape)
140         }
141         ast::ExprKind::Continue(ref opt_ident) => {
142             let id_str = match *opt_ident {
143                 Some(ident) => format!(" {}", ident.node),
144                 None => String::new(),
145             };
146             Some(format!("continue{}", id_str))
147         }
148         ast::ExprKind::Break(ref opt_ident, ref opt_expr) => {
149             let id_str = match *opt_ident {
150                 Some(ident) => format!(" {}", ident.node),
151                 None => String::new(),
152             };
153
154             if let Some(ref expr) = *opt_expr {
155                 rewrite_unary_prefix(context, &format!("break{} ", id_str), &**expr, shape)
156             } else {
157                 Some(format!("break{}", id_str))
158             }
159         }
160         ast::ExprKind::Yield(ref opt_expr) => if let Some(ref expr) = *opt_expr {
161             rewrite_unary_prefix(context, "yield ", &**expr, shape)
162         } else {
163             Some("yield".to_string())
164         },
165         ast::ExprKind::Closure(capture, ref fn_decl, ref body, _) => {
166             rewrite_closure(capture, fn_decl, body, expr.span, context, shape)
167         }
168         ast::ExprKind::Try(..) |
169         ast::ExprKind::Field(..) |
170         ast::ExprKind::TupField(..) |
171         ast::ExprKind::MethodCall(..) => rewrite_chain(expr, context, shape),
172         ast::ExprKind::Mac(ref mac) => {
173             // Failure to rewrite a marco should not imply failure to
174             // rewrite the expression.
175             rewrite_macro(mac, None, context, shape, MacroPosition::Expression)
176                 .or_else(|| Some(context.snippet(expr.span)))
177         }
178         ast::ExprKind::Ret(None) => Some("return".to_owned()),
179         ast::ExprKind::Ret(Some(ref expr)) => {
180             rewrite_unary_prefix(context, "return ", &**expr, shape)
181         }
182         ast::ExprKind::Box(ref expr) => rewrite_unary_prefix(context, "box ", &**expr, shape),
183         ast::ExprKind::AddrOf(mutability, ref expr) => {
184             rewrite_expr_addrof(context, mutability, expr, shape)
185         }
186         ast::ExprKind::Cast(ref expr, ref ty) => rewrite_pair(
187             &**expr,
188             &**ty,
189             "",
190             " as ",
191             "",
192             context,
193             shape,
194             SeparatorPlace::Front,
195         ),
196         ast::ExprKind::Type(ref expr, ref ty) => rewrite_pair(
197             &**expr,
198             &**ty,
199             "",
200             ": ",
201             "",
202             context,
203             shape,
204             SeparatorPlace::Back,
205         ),
206         ast::ExprKind::Index(ref expr, ref index) => {
207             rewrite_index(&**expr, &**index, context, shape)
208         }
209         ast::ExprKind::Repeat(ref expr, ref repeats) => {
210             let (lbr, rbr) = if context.config.spaces_within_square_brackets() {
211                 ("[ ", " ]")
212             } else {
213                 ("[", "]")
214             };
215             rewrite_pair(
216                 &**expr,
217                 &**repeats,
218                 lbr,
219                 "; ",
220                 rbr,
221                 context,
222                 shape,
223                 SeparatorPlace::Back,
224             )
225         }
226         ast::ExprKind::Range(ref lhs, ref rhs, limits) => {
227             let delim = match limits {
228                 ast::RangeLimits::HalfOpen => "..",
229                 ast::RangeLimits::Closed => "..=",
230             };
231
232             fn needs_space_before_range(context: &RewriteContext, lhs: &ast::Expr) -> bool {
233                 match lhs.node {
234                     ast::ExprKind::Lit(ref lit) => match lit.node {
235                         ast::LitKind::FloatUnsuffixed(..) => {
236                             context.snippet(lit.span).ends_with('.')
237                         }
238                         _ => false,
239                     },
240                     _ => false,
241                 }
242             }
243
244             match (lhs.as_ref().map(|x| &**x), rhs.as_ref().map(|x| &**x)) {
245                 (Some(lhs), Some(rhs)) => {
246                     let sp_delim = if context.config.spaces_around_ranges() {
247                         format!(" {} ", delim)
248                     } else if needs_space_before_range(context, lhs) {
249                         format!(" {}", delim)
250                     } else {
251                         delim.into()
252                     };
253                     rewrite_pair(
254                         &*lhs,
255                         &*rhs,
256                         "",
257                         &sp_delim,
258                         "",
259                         context,
260                         shape,
261                         SeparatorPlace::Front,
262                     )
263                 }
264                 (None, Some(rhs)) => {
265                     let sp_delim = if context.config.spaces_around_ranges() {
266                         format!("{} ", delim)
267                     } else {
268                         delim.into()
269                     };
270                     rewrite_unary_prefix(context, &sp_delim, &*rhs, shape)
271                 }
272                 (Some(lhs), None) => {
273                     let sp_delim = if context.config.spaces_around_ranges() {
274                         format!(" {}", delim)
275                     } else {
276                         delim.into()
277                     };
278                     rewrite_unary_suffix(context, &sp_delim, &*lhs, shape)
279                 }
280                 (None, None) => Some(delim.into()),
281             }
282         }
283         // We do not format these expressions yet, but they should still
284         // satisfy our width restrictions.
285         ast::ExprKind::InPlace(..) | ast::ExprKind::InlineAsm(..) => {
286             Some(context.snippet(expr.span))
287         }
288         ast::ExprKind::Catch(ref block) => {
289             if let rw @ Some(_) = rewrite_single_line_block(context, "do catch ", block, shape) {
290                 rw
291             } else {
292                 // 9 = `do catch `
293                 let budget = shape.width.checked_sub(9).unwrap_or(0);
294                 Some(format!(
295                     "{}{}",
296                     "do catch ",
297                     block.rewrite(context, Shape::legacy(budget, shape.indent))?
298                 ))
299             }
300         }
301     };
302
303     expr_rw
304         .and_then(|expr_str| {
305             recover_comment_removed(expr_str, expr.span, context)
306         })
307         .and_then(|expr_str| {
308             let attrs = outer_attributes(&expr.attrs);
309             let attrs_str = attrs.rewrite(context, shape)?;
310             let span = mk_sp(
311                 attrs.last().map_or(expr.span.lo(), |attr| attr.span.hi()),
312                 expr.span.lo(),
313             );
314             combine_strs_with_missing_comments(context, &attrs_str, &expr_str, span, shape, false)
315         })
316 }
317
318 pub fn rewrite_pair<LHS, RHS>(
319     lhs: &LHS,
320     rhs: &RHS,
321     prefix: &str,
322     infix: &str,
323     suffix: &str,
324     context: &RewriteContext,
325     shape: Shape,
326     separator_place: SeparatorPlace,
327 ) -> Option<String>
328 where
329     LHS: Rewrite,
330     RHS: Rewrite,
331 {
332     let lhs_overhead = match separator_place {
333         SeparatorPlace::Back => shape.used_width() + prefix.len() + infix.trim_right().len(),
334         SeparatorPlace::Front => shape.used_width(),
335     };
336     let lhs_shape = Shape {
337         width: context.budget(lhs_overhead),
338         ..shape
339     };
340     let lhs_result = lhs.rewrite(context, lhs_shape)
341         .map(|lhs_str| format!("{}{}", prefix, lhs_str))?;
342
343     // Try to the both lhs and rhs on the same line.
344     let rhs_orig_result = shape
345         .offset_left(last_line_width(&lhs_result) + infix.len())
346         .and_then(|s| s.sub_width(suffix.len()))
347         .and_then(|rhs_shape| rhs.rewrite(context, rhs_shape));
348     if let Some(ref rhs_result) = rhs_orig_result {
349         // If the rhs looks like block expression, we allow it to stay on the same line
350         // with the lhs even if it is multi-lined.
351         let allow_same_line = rhs_result
352             .lines()
353             .next()
354             .map(|first_line| first_line.ends_with('{'))
355             .unwrap_or(false);
356         if !rhs_result.contains('\n') || allow_same_line {
357             let one_line_width = last_line_width(&lhs_result) + infix.len()
358                 + first_line_width(&rhs_result) + suffix.len();
359             if one_line_width <= shape.width {
360                 return Some(format!("{}{}{}{}", lhs_result, infix, rhs_result, suffix));
361             }
362         }
363     }
364
365     // We have to use multiple lines.
366     // Re-evaluate the rhs because we have more space now:
367     let mut rhs_shape = match context.config.control_style() {
368         Style::Legacy => shape
369             .sub_width(suffix.len() + prefix.len())?
370             .visual_indent(prefix.len()),
371         Style::Rfc => {
372             // Try to calculate the initial constraint on the right hand side.
373             let rhs_overhead = shape.rhs_overhead(context.config);
374             Shape::indented(shape.indent.block_indent(context.config), context.config)
375                 .sub_width(rhs_overhead)?
376         }
377     };
378     let infix = match separator_place {
379         SeparatorPlace::Back => infix.trim_right(),
380         SeparatorPlace::Front => infix.trim_left(),
381     };
382     if separator_place == SeparatorPlace::Front {
383         rhs_shape = rhs_shape.offset_left(infix.len())?;
384     }
385     let rhs_result = rhs.rewrite(context, rhs_shape)?;
386     match separator_place {
387         SeparatorPlace::Back => Some(format!(
388             "{}{}\n{}{}{}",
389             lhs_result,
390             infix,
391             rhs_shape.indent.to_string(context.config),
392             rhs_result,
393             suffix
394         )),
395         SeparatorPlace::Front => Some(format!(
396             "{}\n{}{}{}{}",
397             lhs_result,
398             rhs_shape.indent.to_string(context.config),
399             infix,
400             rhs_result,
401             suffix
402         )),
403     }
404 }
405
406 pub fn rewrite_array<'a, I>(
407     expr_iter: I,
408     span: Span,
409     context: &RewriteContext,
410     shape: Shape,
411     trailing_comma: bool,
412 ) -> Option<String>
413 where
414     I: Iterator<Item = &'a ast::Expr>,
415 {
416     let bracket_size = if context.config.spaces_within_square_brackets() {
417         2 // "[ "
418     } else {
419         1 // "["
420     };
421
422     let nested_shape = match context.config.array_layout() {
423         IndentStyle::Block => shape
424             .block()
425             .block_indent(context.config.tab_spaces())
426             .with_max_width(context.config)
427             .sub_width(1)?,
428         IndentStyle::Visual => shape
429             .visual_indent(bracket_size)
430             .sub_width(bracket_size * 2)?,
431     };
432
433     let items = itemize_list(
434         context.codemap,
435         expr_iter,
436         "]",
437         |item| item.span.lo(),
438         |item| item.span.hi(),
439         |item| item.rewrite(context, nested_shape),
440         span.lo(),
441         span.hi(),
442         false,
443     ).collect::<Vec<_>>();
444
445     if items.is_empty() {
446         if context.config.spaces_within_square_brackets() {
447             return Some("[ ]".to_string());
448         } else {
449             return Some("[]".to_string());
450         }
451     }
452
453     let has_long_item = items
454         .iter()
455         .any(|li| li.item.as_ref().map(|s| s.len() > 10).unwrap_or(false));
456
457     let mut tactic = match context.config.array_layout() {
458         IndentStyle::Block => {
459             // FIXME wrong shape in one-line case
460             match shape.width.checked_sub(2 * bracket_size) {
461                 Some(width) => {
462                     let tactic =
463                         ListTactic::LimitedHorizontalVertical(context.config.array_width());
464                     definitive_tactic(&items, tactic, Separator::Comma, width)
465                 }
466                 None => DefinitiveListTactic::Vertical,
467             }
468         }
469         IndentStyle::Visual => if has_long_item || items.iter().any(ListItem::is_multiline) {
470             definitive_tactic(
471                 &items,
472                 ListTactic::LimitedHorizontalVertical(context.config.array_width()),
473                 Separator::Comma,
474                 nested_shape.width,
475             )
476         } else {
477             DefinitiveListTactic::Mixed
478         },
479     };
480     let ends_with_newline = tactic.ends_with_newline(context.config.array_layout());
481     if context.config.array_horizontal_layout_threshold() > 0
482         && items.len() > context.config.array_horizontal_layout_threshold()
483     {
484         tactic = DefinitiveListTactic::Mixed;
485     }
486
487     let fmt = ListFormatting {
488         tactic: tactic,
489         separator: ",",
490         trailing_separator: if trailing_comma {
491             SeparatorTactic::Always
492         } else if context.inside_macro || context.config.array_layout() == IndentStyle::Visual {
493             SeparatorTactic::Never
494         } else {
495             SeparatorTactic::Vertical
496         },
497         separator_place: SeparatorPlace::Back,
498         shape: nested_shape,
499         ends_with_newline: ends_with_newline,
500         preserve_newline: false,
501         config: context.config,
502     };
503     let list_str = write_list(&items, &fmt)?;
504
505     let result = if context.config.array_layout() == IndentStyle::Visual
506         || tactic == DefinitiveListTactic::Horizontal
507     {
508         if context.config.spaces_within_square_brackets() && !list_str.is_empty() {
509             format!("[ {} ]", list_str)
510         } else {
511             format!("[{}]", list_str)
512         }
513     } else {
514         format!(
515             "[\n{}{}\n{}]",
516             nested_shape.indent.to_string(context.config),
517             list_str,
518             shape.block().indent.to_string(context.config)
519         )
520     };
521
522     Some(result)
523 }
524
525 // Return type is (prefix, extra_offset)
526 fn rewrite_closure_fn_decl(
527     capture: ast::CaptureBy,
528     fn_decl: &ast::FnDecl,
529     body: &ast::Expr,
530     span: Span,
531     context: &RewriteContext,
532     shape: Shape,
533 ) -> Option<(String, usize)> {
534     let mover = if capture == ast::CaptureBy::Value {
535         "move "
536     } else {
537         ""
538     };
539     // 4 = "|| {".len(), which is overconservative when the closure consists of
540     // a single expression.
541     let nested_shape = shape.shrink_left(mover.len())?.sub_width(4)?;
542
543     // 1 = |
544     let argument_offset = nested_shape.indent + 1;
545     let arg_shape = nested_shape.offset_left(1)?.visual_indent(0);
546     let ret_str = fn_decl.output.rewrite(context, arg_shape)?;
547
548     let arg_items = itemize_list(
549         context.codemap,
550         fn_decl.inputs.iter(),
551         "|",
552         |arg| span_lo_for_arg(arg),
553         |arg| span_hi_for_arg(context, arg),
554         |arg| arg.rewrite(context, arg_shape),
555         context.codemap.span_after(span, "|"),
556         body.span.lo(),
557         false,
558     );
559     let item_vec = arg_items.collect::<Vec<_>>();
560     // 1 = space between arguments and return type.
561     let horizontal_budget = nested_shape
562         .width
563         .checked_sub(ret_str.len() + 1)
564         .unwrap_or(0);
565     let tactic = definitive_tactic(
566         &item_vec,
567         ListTactic::HorizontalVertical,
568         Separator::Comma,
569         horizontal_budget,
570     );
571     let arg_shape = match tactic {
572         DefinitiveListTactic::Horizontal => arg_shape.sub_width(ret_str.len() + 1)?,
573         _ => arg_shape,
574     };
575
576     let fmt = ListFormatting {
577         tactic: tactic,
578         separator: ",",
579         trailing_separator: SeparatorTactic::Never,
580         separator_place: SeparatorPlace::Back,
581         shape: arg_shape,
582         ends_with_newline: false,
583         preserve_newline: true,
584         config: context.config,
585     };
586     let list_str = write_list(&item_vec, &fmt)?;
587     let mut prefix = format!("{}|{}|", mover, list_str);
588
589     if !ret_str.is_empty() {
590         if prefix.contains('\n') {
591             prefix.push('\n');
592             prefix.push_str(&argument_offset.to_string(context.config));
593         } else {
594             prefix.push(' ');
595         }
596         prefix.push_str(&ret_str);
597     }
598     // 1 = space between `|...|` and body.
599     let extra_offset = last_line_width(&prefix) + 1;
600
601     Some((prefix, extra_offset))
602 }
603
604 // This functions is pretty messy because of the rules around closures and blocks:
605 // FIXME - the below is probably no longer true in full.
606 //   * if there is a return type, then there must be braces,
607 //   * given a closure with braces, whether that is parsed to give an inner block
608 //     or not depends on if there is a return type and if there are statements
609 //     in that block,
610 //   * if the first expression in the body ends with a block (i.e., is a
611 //     statement without needing a semi-colon), then adding or removing braces
612 //     can change whether it is treated as an expression or statement.
613 fn rewrite_closure(
614     capture: ast::CaptureBy,
615     fn_decl: &ast::FnDecl,
616     body: &ast::Expr,
617     span: Span,
618     context: &RewriteContext,
619     shape: Shape,
620 ) -> Option<String> {
621     let (prefix, extra_offset) =
622         rewrite_closure_fn_decl(capture, fn_decl, body, span, context, shape)?;
623     // 1 = space between `|...|` and body.
624     let body_shape = shape.offset_left(extra_offset)?;
625
626     if let ast::ExprKind::Block(ref block) = body.node {
627         // The body of the closure is an empty block.
628         if block.stmts.is_empty() && !block_contains_comment(block, context.codemap) {
629             return Some(format!("{} {{}}", prefix));
630         }
631
632         // Figure out if the block is necessary.
633         let needs_block = block.rules != ast::BlockCheckMode::Default || block.stmts.len() > 1
634             || context.inside_macro
635             || block_contains_comment(block, context.codemap)
636             || prefix.contains('\n');
637
638         let no_return_type = if let ast::FunctionRetTy::Default(_) = fn_decl.output {
639             true
640         } else {
641             false
642         };
643         if no_return_type && !needs_block {
644             // block.stmts.len() == 1
645             if let Some(expr) = stmt_expr(&block.stmts[0]) {
646                 if let Some(rw) = rewrite_closure_expr(expr, &prefix, context, body_shape) {
647                     return Some(rw);
648                 }
649             }
650         }
651
652         // Either we require a block, or tried without and failed.
653         rewrite_closure_block(block, &prefix, context, body_shape)
654     } else {
655         rewrite_closure_expr(body, &prefix, context, body_shape).or_else(|| {
656             // The closure originally had a non-block expression, but we can't fit on
657             // one line, so we'll insert a block.
658             rewrite_closure_with_block(context, body_shape, &prefix, body)
659         })
660     }
661 }
662
663 // Rewrite closure with a single expression wrapping its body with block.
664 fn rewrite_closure_with_block(
665     context: &RewriteContext,
666     shape: Shape,
667     prefix: &str,
668     body: &ast::Expr,
669 ) -> Option<String> {
670     let block = ast::Block {
671         stmts: vec![
672             ast::Stmt {
673                 id: ast::NodeId::new(0),
674                 node: ast::StmtKind::Expr(ptr::P(body.clone())),
675                 span: body.span,
676             },
677         ],
678         id: ast::NodeId::new(0),
679         rules: ast::BlockCheckMode::Default,
680         span: body.span,
681     };
682     rewrite_closure_block(&block, prefix, context, shape)
683 }
684
685 // Rewrite closure with a single expression without wrapping its body with block.
686 fn rewrite_closure_expr(
687     expr: &ast::Expr,
688     prefix: &str,
689     context: &RewriteContext,
690     shape: Shape,
691 ) -> Option<String> {
692     let mut rewrite = expr.rewrite(context, shape);
693     if classify::expr_requires_semi_to_be_stmt(left_most_sub_expr(expr)) {
694         rewrite = and_one_line(rewrite);
695     }
696     rewrite = rewrite.and_then(|rw| {
697         if context.config.multiline_closure_forces_block() && rw.contains('\n') {
698             None
699         } else {
700             Some(rw)
701         }
702     });
703     rewrite.map(|rw| format!("{} {}", prefix, rw))
704 }
705
706 // Rewrite closure whose body is block.
707 fn rewrite_closure_block(
708     block: &ast::Block,
709     prefix: &str,
710     context: &RewriteContext,
711     shape: Shape,
712 ) -> Option<String> {
713     // Start with visual indent, then fall back to block indent if the
714     // closure is large.
715     let block_threshold = context.config.closure_block_indent_threshold();
716     if block_threshold >= 0 {
717         if let Some(block_str) = block.rewrite(context, shape) {
718             if block_str.matches('\n').count() <= block_threshold as usize
719                 && !need_block_indent(&block_str, shape)
720             {
721                 return Some(format!("{} {}", prefix, block_str));
722             }
723         }
724     }
725
726     // The body of the closure is big enough to be block indented, that
727     // means we must re-format.
728     let block_shape = shape.block();
729     let block_str = block.rewrite(context, block_shape)?;
730     Some(format!("{} {}", prefix, block_str))
731 }
732
733 fn and_one_line(x: Option<String>) -> Option<String> {
734     x.and_then(|x| if x.contains('\n') { None } else { Some(x) })
735 }
736
737 fn nop_block_collapse(block_str: Option<String>, budget: usize) -> Option<String> {
738     debug!("nop_block_collapse {:?} {}", block_str, budget);
739     block_str.map(|block_str| {
740         if block_str.starts_with('{') && budget >= 2
741             && (block_str[1..].find(|c: char| !c.is_whitespace()).unwrap() == block_str.len() - 2)
742         {
743             "{}".to_owned()
744         } else {
745             block_str.to_owned()
746         }
747     })
748 }
749
750 fn rewrite_empty_block(
751     context: &RewriteContext,
752     block: &ast::Block,
753     shape: Shape,
754 ) -> Option<String> {
755     if block.stmts.is_empty() && !block_contains_comment(block, context.codemap) && shape.width >= 2
756     {
757         return Some("{}".to_owned());
758     }
759
760     // If a block contains only a single-line comment, then leave it on one line.
761     let user_str = context.snippet(block.span);
762     let user_str = user_str.trim();
763     if user_str.starts_with('{') && user_str.ends_with('}') {
764         let comment_str = user_str[1..user_str.len() - 1].trim();
765         if block.stmts.is_empty() && !comment_str.contains('\n') && !comment_str.starts_with("//")
766             && comment_str.len() + 4 <= shape.width
767         {
768             return Some(format!("{{ {} }}", comment_str));
769         }
770     }
771
772     None
773 }
774
775 fn block_prefix(context: &RewriteContext, block: &ast::Block, shape: Shape) -> Option<String> {
776     Some(match block.rules {
777         ast::BlockCheckMode::Unsafe(..) => {
778             let snippet = context.snippet(block.span);
779             let open_pos = snippet.find_uncommented("{")?;
780             // Extract comment between unsafe and block start.
781             let trimmed = &snippet[6..open_pos].trim();
782
783             if !trimmed.is_empty() {
784                 // 9 = "unsafe  {".len(), 7 = "unsafe ".len()
785                 let budget = shape.width.checked_sub(9)?;
786                 format!(
787                     "unsafe {} ",
788                     rewrite_comment(
789                         trimmed,
790                         true,
791                         Shape::legacy(budget, shape.indent + 7),
792                         context.config,
793                     )?
794                 )
795             } else {
796                 "unsafe ".to_owned()
797             }
798         }
799         ast::BlockCheckMode::Default => String::new(),
800     })
801 }
802
803 fn rewrite_single_line_block(
804     context: &RewriteContext,
805     prefix: &str,
806     block: &ast::Block,
807     shape: Shape,
808 ) -> Option<String> {
809     if is_simple_block(block, context.codemap) {
810         let expr_shape = Shape::legacy(shape.width - prefix.len(), shape.indent);
811         let expr_str = block.stmts[0].rewrite(context, expr_shape)?;
812         let result = format!("{}{{ {} }}", prefix, expr_str);
813         if result.len() <= shape.width && !result.contains('\n') {
814             return Some(result);
815         }
816     }
817     None
818 }
819
820 fn rewrite_block_with_visitor(
821     context: &RewriteContext,
822     prefix: &str,
823     block: &ast::Block,
824     shape: Shape,
825 ) -> Option<String> {
826     if let rw @ Some(_) = rewrite_empty_block(context, block, shape) {
827         return rw;
828     }
829
830     let mut visitor = FmtVisitor::from_codemap(context.parse_session, context.config);
831     visitor.block_indent = shape.indent;
832     visitor.is_if_else_block = context.is_if_else_block;
833     match block.rules {
834         ast::BlockCheckMode::Unsafe(..) => {
835             let snippet = context.snippet(block.span);
836             let open_pos = snippet.find_uncommented("{")?;
837             visitor.last_pos = block.span.lo() + BytePos(open_pos as u32)
838         }
839         ast::BlockCheckMode::Default => visitor.last_pos = block.span.lo(),
840     }
841
842     visitor.visit_block(block, None);
843     Some(format!("{}{}", prefix, visitor.buffer))
844 }
845
846 impl Rewrite for ast::Block {
847     fn rewrite(&self, context: &RewriteContext, shape: Shape) -> Option<String> {
848         // shape.width is used only for the single line case: either the empty block `{}`,
849         // or an unsafe expression `unsafe { e }`.
850         if let rw @ Some(_) = rewrite_empty_block(context, self, shape) {
851             return rw;
852         }
853
854         let prefix = block_prefix(context, self, shape)?;
855
856         let result = rewrite_block_with_visitor(context, &prefix, self, shape);
857         if let Some(ref result_str) = result {
858             if result_str.lines().count() <= 3 {
859                 if let rw @ Some(_) = rewrite_single_line_block(context, &prefix, self, shape) {
860                     return rw;
861                 }
862             }
863         }
864
865         result
866     }
867 }
868
869 impl Rewrite for ast::Stmt {
870     fn rewrite(&self, context: &RewriteContext, shape: Shape) -> Option<String> {
871         skip_out_of_file_lines_range!(context, self.span());
872
873         let result = match self.node {
874             ast::StmtKind::Local(ref local) => local.rewrite(context, shape),
875             ast::StmtKind::Expr(ref ex) | ast::StmtKind::Semi(ref ex) => {
876                 let suffix = if semicolon_for_stmt(context, self) {
877                     ";"
878                 } else {
879                     ""
880                 };
881
882                 let shape = shape.sub_width(suffix.len())?;
883                 format_expr(ex, ExprType::Statement, context, shape).map(|s| s + suffix)
884             }
885             ast::StmtKind::Mac(..) | ast::StmtKind::Item(..) => None,
886         };
887         result.and_then(|res| recover_comment_removed(res, self.span(), context))
888     }
889 }
890
891 // Rewrite condition if the given expression has one.
892 fn rewrite_cond(context: &RewriteContext, expr: &ast::Expr, shape: Shape) -> Option<String> {
893     match expr.node {
894         ast::ExprKind::Match(ref cond, _) => {
895             // `match `cond` {`
896             let cond_shape = match context.config.control_style() {
897                 Style::Legacy => shape.shrink_left(6).and_then(|s| s.sub_width(2))?,
898                 Style::Rfc => shape.offset_left(8)?,
899             };
900             cond.rewrite(context, cond_shape)
901         }
902         _ => to_control_flow(expr, ExprType::SubExpression).and_then(|control_flow| {
903             let alt_block_sep =
904                 String::from("\n") + &shape.indent.block_only().to_string(context.config);
905             control_flow
906                 .rewrite_cond(context, shape, &alt_block_sep)
907                 .and_then(|rw| Some(rw.0))
908         }),
909     }
910 }
911
912 // Abstraction over control flow expressions
913 #[derive(Debug)]
914 struct ControlFlow<'a> {
915     cond: Option<&'a ast::Expr>,
916     block: &'a ast::Block,
917     else_block: Option<&'a ast::Expr>,
918     label: Option<ast::SpannedIdent>,
919     pat: Option<&'a ast::Pat>,
920     keyword: &'a str,
921     matcher: &'a str,
922     connector: &'a str,
923     allow_single_line: bool,
924     // True if this is an `if` expression in an `else if` :-( hacky
925     nested_if: bool,
926     span: Span,
927 }
928
929 fn to_control_flow<'a>(expr: &'a ast::Expr, expr_type: ExprType) -> Option<ControlFlow<'a>> {
930     match expr.node {
931         ast::ExprKind::If(ref cond, ref if_block, ref else_block) => Some(ControlFlow::new_if(
932             cond,
933             None,
934             if_block,
935             else_block.as_ref().map(|e| &**e),
936             expr_type == ExprType::SubExpression,
937             false,
938             expr.span,
939         )),
940         ast::ExprKind::IfLet(ref pat, ref cond, ref if_block, ref else_block) => {
941             Some(ControlFlow::new_if(
942                 cond,
943                 Some(pat),
944                 if_block,
945                 else_block.as_ref().map(|e| &**e),
946                 expr_type == ExprType::SubExpression,
947                 false,
948                 expr.span,
949             ))
950         }
951         ast::ExprKind::ForLoop(ref pat, ref cond, ref block, label) => {
952             Some(ControlFlow::new_for(pat, cond, block, label, expr.span))
953         }
954         ast::ExprKind::Loop(ref block, label) => {
955             Some(ControlFlow::new_loop(block, label, expr.span))
956         }
957         ast::ExprKind::While(ref cond, ref block, label) => {
958             Some(ControlFlow::new_while(None, cond, block, label, expr.span))
959         }
960         ast::ExprKind::WhileLet(ref pat, ref cond, ref block, label) => Some(
961             ControlFlow::new_while(Some(pat), cond, block, label, expr.span),
962         ),
963         _ => None,
964     }
965 }
966
967 impl<'a> ControlFlow<'a> {
968     fn new_if(
969         cond: &'a ast::Expr,
970         pat: Option<&'a ast::Pat>,
971         block: &'a ast::Block,
972         else_block: Option<&'a ast::Expr>,
973         allow_single_line: bool,
974         nested_if: bool,
975         span: Span,
976     ) -> ControlFlow<'a> {
977         ControlFlow {
978             cond: Some(cond),
979             block: block,
980             else_block: else_block,
981             label: None,
982             pat: pat,
983             keyword: "if",
984             matcher: match pat {
985                 Some(..) => "let",
986                 None => "",
987             },
988             connector: " =",
989             allow_single_line: allow_single_line,
990             nested_if: nested_if,
991             span: span,
992         }
993     }
994
995     fn new_loop(
996         block: &'a ast::Block,
997         label: Option<ast::SpannedIdent>,
998         span: Span,
999     ) -> ControlFlow<'a> {
1000         ControlFlow {
1001             cond: None,
1002             block: block,
1003             else_block: None,
1004             label: label,
1005             pat: None,
1006             keyword: "loop",
1007             matcher: "",
1008             connector: "",
1009             allow_single_line: false,
1010             nested_if: false,
1011             span: span,
1012         }
1013     }
1014
1015     fn new_while(
1016         pat: Option<&'a ast::Pat>,
1017         cond: &'a ast::Expr,
1018         block: &'a ast::Block,
1019         label: Option<ast::SpannedIdent>,
1020         span: Span,
1021     ) -> ControlFlow<'a> {
1022         ControlFlow {
1023             cond: Some(cond),
1024             block: block,
1025             else_block: None,
1026             label: label,
1027             pat: pat,
1028             keyword: "while",
1029             matcher: match pat {
1030                 Some(..) => "let",
1031                 None => "",
1032             },
1033             connector: " =",
1034             allow_single_line: false,
1035             nested_if: false,
1036             span: span,
1037         }
1038     }
1039
1040     fn new_for(
1041         pat: &'a ast::Pat,
1042         cond: &'a ast::Expr,
1043         block: &'a ast::Block,
1044         label: Option<ast::SpannedIdent>,
1045         span: Span,
1046     ) -> ControlFlow<'a> {
1047         ControlFlow {
1048             cond: Some(cond),
1049             block: block,
1050             else_block: None,
1051             label: label,
1052             pat: Some(pat),
1053             keyword: "for",
1054             matcher: "",
1055             connector: " in",
1056             allow_single_line: false,
1057             nested_if: false,
1058             span: span,
1059         }
1060     }
1061
1062     fn rewrite_single_line(
1063         &self,
1064         pat_expr_str: &str,
1065         context: &RewriteContext,
1066         width: usize,
1067     ) -> Option<String> {
1068         assert!(self.allow_single_line);
1069         let else_block = self.else_block?;
1070         let fixed_cost = self.keyword.len() + "  {  } else {  }".len();
1071
1072         if let ast::ExprKind::Block(ref else_node) = else_block.node {
1073             if !is_simple_block(self.block, context.codemap)
1074                 || !is_simple_block(else_node, context.codemap)
1075                 || pat_expr_str.contains('\n')
1076             {
1077                 return None;
1078             }
1079
1080             let new_width = width.checked_sub(pat_expr_str.len() + fixed_cost)?;
1081             let expr = &self.block.stmts[0];
1082             let if_str = expr.rewrite(context, Shape::legacy(new_width, Indent::empty()))?;
1083
1084             let new_width = new_width.checked_sub(if_str.len())?;
1085             let else_expr = &else_node.stmts[0];
1086             let else_str = else_expr.rewrite(context, Shape::legacy(new_width, Indent::empty()))?;
1087
1088             if if_str.contains('\n') || else_str.contains('\n') {
1089                 return None;
1090             }
1091
1092             let result = format!(
1093                 "{} {} {{ {} }} else {{ {} }}",
1094                 self.keyword,
1095                 pat_expr_str,
1096                 if_str,
1097                 else_str
1098             );
1099
1100             if result.len() <= width {
1101                 return Some(result);
1102             }
1103         }
1104
1105         None
1106     }
1107 }
1108
1109 impl<'a> ControlFlow<'a> {
1110     fn rewrite_cond(
1111         &self,
1112         context: &RewriteContext,
1113         shape: Shape,
1114         alt_block_sep: &str,
1115     ) -> Option<(String, usize)> {
1116         // Do not take the rhs overhead from the upper expressions into account
1117         // when rewriting pattern.
1118         let new_width = context
1119             .config
1120             .max_width()
1121             .checked_sub(shape.used_width())
1122             .unwrap_or(0);
1123         let fresh_shape = Shape {
1124             width: new_width,
1125             ..shape
1126         };
1127         let constr_shape = if self.nested_if {
1128             // We are part of an if-elseif-else chain. Our constraints are tightened.
1129             // 7 = "} else " .len()
1130             fresh_shape.offset_left(7)?
1131         } else {
1132             fresh_shape
1133         };
1134
1135         let label_string = rewrite_label(self.label);
1136         // 1 = space after keyword.
1137         let offset = self.keyword.len() + label_string.len() + 1;
1138
1139         let pat_expr_string = match self.cond {
1140             Some(cond) => {
1141                 let cond_shape = match context.config.control_style() {
1142                     Style::Legacy => constr_shape.shrink_left(offset)?,
1143                     Style::Rfc => constr_shape.offset_left(offset)?,
1144                 };
1145                 rewrite_pat_expr(
1146                     context,
1147                     self.pat,
1148                     cond,
1149                     self.matcher,
1150                     self.connector,
1151                     self.keyword,
1152                     cond_shape,
1153                 )?
1154             }
1155             None => String::new(),
1156         };
1157
1158         let brace_overhead =
1159             if context.config.control_brace_style() != ControlBraceStyle::AlwaysNextLine {
1160                 // 2 = ` {`
1161                 2
1162             } else {
1163                 0
1164             };
1165         let one_line_budget = context
1166             .config
1167             .max_width()
1168             .checked_sub(constr_shape.used_width() + offset + brace_overhead)
1169             .unwrap_or(0);
1170         let force_newline_brace = context.config.control_style() == Style::Rfc
1171             && (pat_expr_string.contains('\n') || pat_expr_string.len() > one_line_budget)
1172             && !last_line_extendable(&pat_expr_string);
1173
1174         // Try to format if-else on single line.
1175         if self.allow_single_line && context.config.single_line_if_else_max_width() > 0 {
1176             let trial = self.rewrite_single_line(&pat_expr_string, context, shape.width);
1177
1178             if let Some(cond_str) = trial {
1179                 if cond_str.len() <= context.config.single_line_if_else_max_width() {
1180                     return Some((cond_str, 0));
1181                 }
1182             }
1183         }
1184
1185         let cond_span = if let Some(cond) = self.cond {
1186             cond.span
1187         } else {
1188             mk_sp(self.block.span.lo(), self.block.span.lo())
1189         };
1190
1191         // `for event in event`
1192         // Do not include label in the span.
1193         let lo = self.label.map_or(self.span.lo(), |label| label.span.hi());
1194         let between_kwd_cond = mk_sp(
1195             context
1196                 .codemap
1197                 .span_after(mk_sp(lo, self.span.hi()), self.keyword.trim()),
1198             self.pat
1199                 .map_or(cond_span.lo(), |p| if self.matcher.is_empty() {
1200                     p.span.lo()
1201                 } else {
1202                     context.codemap.span_before(self.span, self.matcher.trim())
1203                 }),
1204         );
1205
1206         let between_kwd_cond_comment = extract_comment(between_kwd_cond, context, shape);
1207
1208         let after_cond_comment =
1209             extract_comment(mk_sp(cond_span.hi(), self.block.span.lo()), context, shape);
1210
1211         let block_sep = if self.cond.is_none() && between_kwd_cond_comment.is_some() {
1212             ""
1213         } else if context.config.control_brace_style() == ControlBraceStyle::AlwaysNextLine
1214             || force_newline_brace
1215         {
1216             alt_block_sep
1217         } else {
1218             " "
1219         };
1220
1221         let used_width = if pat_expr_string.contains('\n') {
1222             last_line_width(&pat_expr_string)
1223         } else {
1224             // 2 = spaces after keyword and condition.
1225             label_string.len() + self.keyword.len() + pat_expr_string.len() + 2
1226         };
1227
1228         Some((
1229             format!(
1230                 "{}{}{}{}{}",
1231                 label_string,
1232                 self.keyword,
1233                 between_kwd_cond_comment.as_ref().map_or(
1234                     if pat_expr_string.is_empty() || pat_expr_string.starts_with('\n') {
1235                         ""
1236                     } else {
1237                         " "
1238                     },
1239                     |s| &**s,
1240                 ),
1241                 pat_expr_string,
1242                 after_cond_comment.as_ref().map_or(block_sep, |s| &**s)
1243             ),
1244             used_width,
1245         ))
1246     }
1247 }
1248
1249 impl<'a> Rewrite for ControlFlow<'a> {
1250     fn rewrite(&self, context: &RewriteContext, shape: Shape) -> Option<String> {
1251         debug!("ControlFlow::rewrite {:?} {:?}", self, shape);
1252
1253         let alt_block_sep =
1254             String::from("\n") + &shape.indent.block_only().to_string(context.config);
1255         let (cond_str, used_width) = self.rewrite_cond(context, shape, &alt_block_sep)?;
1256         // If `used_width` is 0, it indicates that whole control flow is written in a single line.
1257         if used_width == 0 {
1258             return Some(cond_str);
1259         }
1260
1261         let block_width = shape.width.checked_sub(used_width).unwrap_or(0);
1262         // This is used only for the empty block case: `{}`. So, we use 1 if we know
1263         // we should avoid the single line case.
1264         let block_width = if self.else_block.is_some() || self.nested_if {
1265             min(1, block_width)
1266         } else {
1267             block_width
1268         };
1269         let block_shape = Shape {
1270             width: block_width,
1271             ..shape
1272         };
1273         let mut block_context = context.clone();
1274         block_context.is_if_else_block = self.else_block.is_some();
1275         let block_str = rewrite_block_with_visitor(&block_context, "", self.block, block_shape)?;
1276
1277         let mut result = format!("{}{}", cond_str, block_str);
1278
1279         if let Some(else_block) = self.else_block {
1280             let shape = Shape::indented(shape.indent, context.config);
1281             let mut last_in_chain = false;
1282             let rewrite = match else_block.node {
1283                 // If the else expression is another if-else expression, prevent it
1284                 // from being formatted on a single line.
1285                 // Note how we're passing the original shape, as the
1286                 // cost of "else" should not cascade.
1287                 ast::ExprKind::IfLet(ref pat, ref cond, ref if_block, ref next_else_block) => {
1288                     ControlFlow::new_if(
1289                         cond,
1290                         Some(pat),
1291                         if_block,
1292                         next_else_block.as_ref().map(|e| &**e),
1293                         false,
1294                         true,
1295                         mk_sp(else_block.span.lo(), self.span.hi()),
1296                     ).rewrite(context, shape)
1297                 }
1298                 ast::ExprKind::If(ref cond, ref if_block, ref next_else_block) => {
1299                     ControlFlow::new_if(
1300                         cond,
1301                         None,
1302                         if_block,
1303                         next_else_block.as_ref().map(|e| &**e),
1304                         false,
1305                         true,
1306                         mk_sp(else_block.span.lo(), self.span.hi()),
1307                     ).rewrite(context, shape)
1308                 }
1309                 _ => {
1310                     last_in_chain = true;
1311                     // When rewriting a block, the width is only used for single line
1312                     // blocks, passing 1 lets us avoid that.
1313                     let else_shape = Shape {
1314                         width: min(1, shape.width),
1315                         ..shape
1316                     };
1317                     format_expr(else_block, ExprType::Statement, context, else_shape)
1318                 }
1319             };
1320
1321             let between_kwd_else_block = mk_sp(
1322                 self.block.span.hi(),
1323                 context
1324                     .codemap
1325                     .span_before(mk_sp(self.block.span.hi(), else_block.span.lo()), "else"),
1326             );
1327             let between_kwd_else_block_comment =
1328                 extract_comment(between_kwd_else_block, context, shape);
1329
1330             let after_else = mk_sp(
1331                 context
1332                     .codemap
1333                     .span_after(mk_sp(self.block.span.hi(), else_block.span.lo()), "else"),
1334                 else_block.span.lo(),
1335             );
1336             let after_else_comment = extract_comment(after_else, context, shape);
1337
1338             let between_sep = match context.config.control_brace_style() {
1339                 ControlBraceStyle::AlwaysNextLine | ControlBraceStyle::ClosingNextLine => {
1340                     &*alt_block_sep
1341                 }
1342                 ControlBraceStyle::AlwaysSameLine => " ",
1343             };
1344             let after_sep = match context.config.control_brace_style() {
1345                 ControlBraceStyle::AlwaysNextLine if last_in_chain => &*alt_block_sep,
1346                 _ => " ",
1347             };
1348
1349             result.push_str(&format!(
1350                 "{}else{}",
1351                 between_kwd_else_block_comment
1352                     .as_ref()
1353                     .map_or(between_sep, |s| &**s),
1354                 after_else_comment.as_ref().map_or(after_sep, |s| &**s),
1355             ));
1356             result.push_str(&rewrite?);
1357         }
1358
1359         Some(result)
1360     }
1361 }
1362
1363 fn rewrite_label(label: Option<ast::SpannedIdent>) -> Cow<'static, str> {
1364     match label {
1365         Some(ident) => Cow::from(format!("{}: ", ident.node)),
1366         None => Cow::from(""),
1367     }
1368 }
1369
1370 fn extract_comment(span: Span, context: &RewriteContext, shape: Shape) -> Option<String> {
1371     match rewrite_missing_comment(span, shape, context) {
1372         Some(ref comment) if !comment.is_empty() => Some(format!(
1373             "\n{indent}{}\n{indent}",
1374             comment,
1375             indent = shape.indent.to_string(context.config)
1376         )),
1377         _ => None,
1378     }
1379 }
1380
1381 fn block_contains_comment(block: &ast::Block, codemap: &CodeMap) -> bool {
1382     let snippet = codemap.span_to_snippet(block.span).unwrap();
1383     contains_comment(&snippet)
1384 }
1385
1386 // Checks that a block contains no statements, an expression and no comments.
1387 // FIXME: incorrectly returns false when comment is contained completely within
1388 // the expression.
1389 pub fn is_simple_block(block: &ast::Block, codemap: &CodeMap) -> bool {
1390     (block.stmts.len() == 1 && stmt_is_expr(&block.stmts[0])
1391         && !block_contains_comment(block, codemap))
1392 }
1393
1394 /// Checks whether a block contains at most one statement or expression, and no comments.
1395 pub fn is_simple_block_stmt(block: &ast::Block, codemap: &CodeMap) -> bool {
1396     block.stmts.len() <= 1 && !block_contains_comment(block, codemap)
1397 }
1398
1399 /// Checks whether a block contains no statements, expressions, or comments.
1400 pub fn is_empty_block(block: &ast::Block, codemap: &CodeMap) -> bool {
1401     block.stmts.is_empty() && !block_contains_comment(block, codemap)
1402 }
1403
1404 pub fn stmt_is_expr(stmt: &ast::Stmt) -> bool {
1405     match stmt.node {
1406         ast::StmtKind::Expr(..) => true,
1407         _ => false,
1408     }
1409 }
1410
1411 fn is_unsafe_block(block: &ast::Block) -> bool {
1412     if let ast::BlockCheckMode::Unsafe(..) = block.rules {
1413         true
1414     } else {
1415         false
1416     }
1417 }
1418
1419 // A simple wrapper type against ast::Arm. Used inside write_list().
1420 struct ArmWrapper<'a> {
1421     pub arm: &'a ast::Arm,
1422     // True if the arm is the last one in match expression. Used to decide on whether we should add
1423     // trailing comma to the match arm when `config.trailing_comma() == Never`.
1424     pub is_last: bool,
1425 }
1426
1427 impl<'a> ArmWrapper<'a> {
1428     pub fn new(arm: &'a ast::Arm, is_last: bool) -> ArmWrapper<'a> {
1429         ArmWrapper { arm, is_last }
1430     }
1431 }
1432
1433 impl<'a> Rewrite for ArmWrapper<'a> {
1434     fn rewrite(&self, context: &RewriteContext, shape: Shape) -> Option<String> {
1435         rewrite_match_arm(context, self.arm, shape, self.is_last)
1436     }
1437 }
1438
1439 fn rewrite_match(
1440     context: &RewriteContext,
1441     cond: &ast::Expr,
1442     arms: &[ast::Arm],
1443     shape: Shape,
1444     span: Span,
1445     attrs: &[ast::Attribute],
1446 ) -> Option<String> {
1447     if arms.is_empty() {
1448         return None;
1449     }
1450
1451     // Do not take the rhs overhead from the upper expressions into account
1452     // when rewriting match condition.
1453     let new_width = context.config.max_width().checked_sub(shape.used_width())?;
1454     let cond_shape = Shape {
1455         width: new_width,
1456         ..shape
1457     };
1458     // 6 = `match `
1459     let cond_shape = match context.config.control_style() {
1460         Style::Legacy => cond_shape.shrink_left(6)?,
1461         Style::Rfc => cond_shape.offset_left(6)?,
1462     };
1463     let cond_str = cond.rewrite(context, cond_shape)?;
1464     let alt_block_sep = String::from("\n") + &shape.indent.block_only().to_string(context.config);
1465     let block_sep = match context.config.control_brace_style() {
1466         ControlBraceStyle::AlwaysNextLine => &alt_block_sep,
1467         _ if last_line_extendable(&cond_str) => " ",
1468         // 2 = ` {`
1469         _ if cond_str.contains('\n') || cond_str.len() + 2 > cond_shape.width => &alt_block_sep,
1470         _ => " ",
1471     };
1472
1473     let nested_indent_str = shape
1474         .indent
1475         .block_indent(context.config)
1476         .to_string(context.config);
1477     // Inner attributes.
1478     let inner_attrs = &inner_attributes(attrs);
1479     let inner_attrs_str = if inner_attrs.is_empty() {
1480         String::new()
1481     } else {
1482         inner_attrs
1483             .rewrite(context, shape)
1484             .map(|s| format!("{}{}\n", nested_indent_str, s))?
1485     };
1486
1487     let open_brace_pos = if inner_attrs.is_empty() {
1488         context
1489             .codemap
1490             .span_after(mk_sp(cond.span.hi(), arms[0].span().lo()), "{")
1491     } else {
1492         inner_attrs[inner_attrs.len() - 1].span().hi()
1493     };
1494
1495     let arm_indent_str = if context.config.indent_match_arms() {
1496         nested_indent_str
1497     } else {
1498         shape.indent.to_string(context.config)
1499     };
1500
1501     Some(format!(
1502         "match {}{}{{\n{}{}{}\n{}}}",
1503         cond_str,
1504         block_sep,
1505         inner_attrs_str,
1506         arm_indent_str,
1507         rewrite_match_arms(context, arms, shape, span, open_brace_pos,)?,
1508         shape.indent.to_string(context.config),
1509     ))
1510 }
1511
1512 fn arm_comma(config: &Config, body: &ast::Expr, is_last: bool) -> &'static str {
1513     if is_last && config.trailing_comma() == SeparatorTactic::Never {
1514         ""
1515     } else if config.match_block_trailing_comma() {
1516         ","
1517     } else if let ast::ExprKind::Block(ref block) = body.node {
1518         if let ast::BlockCheckMode::Default = block.rules {
1519             ""
1520         } else {
1521             ","
1522         }
1523     } else {
1524         ","
1525     }
1526 }
1527
1528 fn rewrite_match_arms(
1529     context: &RewriteContext,
1530     arms: &[ast::Arm],
1531     shape: Shape,
1532     span: Span,
1533     open_brace_pos: BytePos,
1534 ) -> Option<String> {
1535     let arm_shape = if context.config.indent_match_arms() {
1536         shape.block_indent(context.config.tab_spaces())
1537     } else {
1538         shape.block_indent(0)
1539     }.with_max_width(context.config);
1540
1541     let arm_len = arms.len();
1542     let is_last_iter = repeat(false)
1543         .take(arm_len.checked_sub(1).unwrap_or(0))
1544         .chain(repeat(true));
1545     let items = itemize_list(
1546         context.codemap,
1547         arms.iter()
1548             .zip(is_last_iter)
1549             .map(|(arm, is_last)| ArmWrapper::new(arm, is_last)),
1550         "}",
1551         |arm| arm.arm.span().lo(),
1552         |arm| arm.arm.span().hi(),
1553         |arm| arm.rewrite(context, arm_shape),
1554         open_brace_pos,
1555         span.hi(),
1556         false,
1557     );
1558     let arms_vec: Vec<_> = items.collect();
1559     let fmt = ListFormatting {
1560         tactic: DefinitiveListTactic::Vertical,
1561         // We will add/remove commas inside `arm.rewrite()`, and hence no separator here.
1562         separator: "",
1563         trailing_separator: SeparatorTactic::Never,
1564         separator_place: SeparatorPlace::Back,
1565         shape: arm_shape,
1566         ends_with_newline: true,
1567         preserve_newline: true,
1568         config: context.config,
1569     };
1570
1571     write_list(&arms_vec, &fmt)
1572 }
1573
1574 fn rewrite_match_arm(
1575     context: &RewriteContext,
1576     arm: &ast::Arm,
1577     shape: Shape,
1578     is_last: bool,
1579 ) -> Option<String> {
1580     let (missing_span, attrs_str) = if !arm.attrs.is_empty() {
1581         if contains_skip(&arm.attrs) {
1582             let (_, body) = flatten_arm_body(context, &arm.body);
1583             // `arm.span()` does not include trailing comma, add it manually.
1584             return Some(format!(
1585                 "{}{}",
1586                 context.snippet(arm.span()),
1587                 arm_comma(context.config, body, is_last),
1588             ));
1589         }
1590         (
1591             mk_sp(
1592                 arm.attrs[arm.attrs.len() - 1].span.hi(),
1593                 arm.pats[0].span.lo(),
1594             ),
1595             arm.attrs.rewrite(context, shape)?,
1596         )
1597     } else {
1598         (mk_sp(arm.span().lo(), arm.span().lo()), String::new())
1599     };
1600     let pats_str =
1601         rewrite_match_pattern(context, &arm.pats, &arm.guard, shape).and_then(|pats_str| {
1602             combine_strs_with_missing_comments(
1603                 context,
1604                 &attrs_str,
1605                 &pats_str,
1606                 missing_span,
1607                 shape,
1608                 false,
1609             )
1610         })?;
1611     rewrite_match_body(
1612         context,
1613         &arm.body,
1614         &pats_str,
1615         shape,
1616         arm.guard.is_some(),
1617         is_last,
1618     )
1619 }
1620
1621 fn rewrite_match_pattern(
1622     context: &RewriteContext,
1623     pats: &[ptr::P<ast::Pat>],
1624     guard: &Option<ptr::P<ast::Expr>>,
1625     shape: Shape,
1626 ) -> Option<String> {
1627     // Patterns
1628     // 5 = ` => {`
1629     let pat_shape = shape.sub_width(5)?;
1630
1631     let pat_strs = pats.iter()
1632         .map(|p| p.rewrite(context, pat_shape))
1633         .collect::<Option<Vec<_>>>()?;
1634
1635     let items: Vec<_> = pat_strs.into_iter().map(ListItem::from_str).collect();
1636     let tactic = definitive_tactic(
1637         &items,
1638         ListTactic::HorizontalVertical,
1639         Separator::VerticalBar,
1640         pat_shape.width,
1641     );
1642     let fmt = ListFormatting {
1643         tactic: tactic,
1644         separator: " |",
1645         trailing_separator: SeparatorTactic::Never,
1646         separator_place: context.config.match_pattern_separator_break_point(),
1647         shape: pat_shape,
1648         ends_with_newline: false,
1649         preserve_newline: false,
1650         config: context.config,
1651     };
1652     let pats_str = write_list(&items, &fmt)?;
1653
1654     // Guard
1655     let guard_str = rewrite_guard(context, guard, shape, trimmed_last_line_width(&pats_str))?;
1656
1657     Some(format!("{}{}", pats_str, guard_str))
1658 }
1659
1660 // (extend, body)
1661 // @extend: true if the arm body can be put next to `=>`
1662 // @body: flattened body, if the body is block with a single expression
1663 fn flatten_arm_body<'a>(context: &'a RewriteContext, body: &'a ast::Expr) -> (bool, &'a ast::Expr) {
1664     match body.node {
1665         ast::ExprKind::Block(ref block)
1666             if !is_unsafe_block(block) && is_simple_block(block, context.codemap) =>
1667         {
1668             if let ast::StmtKind::Expr(ref expr) = block.stmts[0].node {
1669                 (
1670                     !context.config.multiline_match_arm_forces_block()
1671                         && expr.can_be_overflowed(context, 1),
1672                     &**expr,
1673                 )
1674             } else {
1675                 (false, &*body)
1676             }
1677         }
1678         _ => (
1679             !context.config.multiline_match_arm_forces_block()
1680                 && body.can_be_overflowed(context, 1),
1681             &*body,
1682         ),
1683     }
1684 }
1685
1686 fn rewrite_match_body(
1687     context: &RewriteContext,
1688     body: &ptr::P<ast::Expr>,
1689     pats_str: &str,
1690     shape: Shape,
1691     has_guard: bool,
1692     is_last: bool,
1693 ) -> Option<String> {
1694     let (extend, body) = flatten_arm_body(context, body);
1695
1696     let comma = arm_comma(context.config, body, is_last);
1697     let alt_block_sep = String::from("\n") + &shape.indent.block_only().to_string(context.config);
1698     let alt_block_sep = alt_block_sep.as_str();
1699     let (is_block, is_empty_block) = if let ast::ExprKind::Block(ref block) = body.node {
1700         (true, is_empty_block(block, context.codemap))
1701     } else {
1702         (false, false)
1703     };
1704
1705     let combine_orig_body = |body_str: &str| {
1706         let block_sep = match context.config.control_brace_style() {
1707             ControlBraceStyle::AlwaysNextLine if is_block => alt_block_sep,
1708             _ => " ",
1709         };
1710
1711         Some(format!("{} =>{}{}{}", pats_str, block_sep, body_str, comma))
1712     };
1713
1714     let forbid_same_line = has_guard && pats_str.contains('\n') && !is_empty_block;
1715     let next_line_indent = if is_block {
1716         shape.indent
1717     } else {
1718         shape.indent.block_indent(context.config)
1719     };
1720     let combine_next_line_body = |body_str: &str| {
1721         if is_block {
1722             return Some(format!(
1723                 "{} =>\n{}{}",
1724                 pats_str,
1725                 next_line_indent.to_string(context.config),
1726                 body_str
1727             ));
1728         }
1729
1730         let indent_str = shape.indent.to_string(context.config);
1731         let nested_indent_str = next_line_indent.to_string(context.config);
1732         let (body_prefix, body_suffix) = if context.config.wrap_match_arms() {
1733             let comma = if context.config.match_block_trailing_comma() {
1734                 ","
1735             } else {
1736                 ""
1737             };
1738             ("{", format!("\n{}}}{}", indent_str, comma))
1739         } else {
1740             ("", String::from(","))
1741         };
1742
1743         let block_sep = match context.config.control_brace_style() {
1744             ControlBraceStyle::AlwaysNextLine => format!("{}{}\n", alt_block_sep, body_prefix),
1745             _ if body_prefix.is_empty() => "\n".to_owned(),
1746             _ if forbid_same_line => format!("{}{}\n", alt_block_sep, body_prefix),
1747             _ => format!(" {}\n", body_prefix),
1748         } + &nested_indent_str;
1749
1750         Some(format!(
1751             "{} =>{}{}{}",
1752             pats_str,
1753             block_sep,
1754             body_str,
1755             body_suffix
1756         ))
1757     };
1758
1759     // Let's try and get the arm body on the same line as the condition.
1760     // 4 = ` => `.len()
1761     let orig_body_shape = shape
1762         .offset_left(extra_offset(pats_str, shape) + 4)
1763         .and_then(|shape| shape.sub_width(comma.len()));
1764     let orig_body = if let Some(body_shape) = orig_body_shape {
1765         let rewrite = nop_block_collapse(
1766             format_expr(body, ExprType::Statement, context, body_shape),
1767             body_shape.width,
1768         );
1769
1770         match rewrite {
1771             Some(ref body_str)
1772                 if !forbid_same_line
1773                     && (is_block
1774                         || (!body_str.contains('\n') && body_str.len() <= body_shape.width)) =>
1775             {
1776                 return combine_orig_body(body_str);
1777             }
1778             _ => rewrite,
1779         }
1780     } else {
1781         None
1782     };
1783     let orig_budget = orig_body_shape.map_or(0, |shape| shape.width);
1784
1785     // Try putting body on the next line and see if it looks better.
1786     let next_line_body_shape = Shape::indented(next_line_indent, context.config);
1787     let next_line_body = nop_block_collapse(
1788         format_expr(body, ExprType::Statement, context, next_line_body_shape),
1789         next_line_body_shape.width,
1790     );
1791     match (orig_body, next_line_body) {
1792         (Some(ref orig_str), Some(ref next_line_str))
1793             if forbid_same_line || prefer_next_line(orig_str, next_line_str) =>
1794         {
1795             combine_next_line_body(next_line_str)
1796         }
1797         (Some(ref orig_str), _) if extend && first_line_width(orig_str) <= orig_budget => {
1798             combine_orig_body(orig_str)
1799         }
1800         (Some(ref orig_str), Some(ref next_line_str)) if orig_str.contains('\n') => {
1801             combine_next_line_body(next_line_str)
1802         }
1803         (None, Some(ref next_line_str)) => combine_next_line_body(next_line_str),
1804         (None, None) => None,
1805         (Some(ref orig_str), _) => combine_orig_body(orig_str),
1806     }
1807 }
1808
1809 // The `if ...` guard on a match arm.
1810 fn rewrite_guard(
1811     context: &RewriteContext,
1812     guard: &Option<ptr::P<ast::Expr>>,
1813     shape: Shape,
1814     // The amount of space used up on this line for the pattern in
1815     // the arm (excludes offset).
1816     pattern_width: usize,
1817 ) -> Option<String> {
1818     if let Some(ref guard) = *guard {
1819         // First try to fit the guard string on the same line as the pattern.
1820         // 4 = ` if `, 5 = ` => {`
1821         let cond_shape = shape
1822             .offset_left(pattern_width + 4)
1823             .and_then(|s| s.sub_width(5));
1824         if let Some(cond_shape) = cond_shape {
1825             if let Some(cond_str) = guard.rewrite(context, cond_shape) {
1826                 if !cond_str.contains('\n') || pattern_width <= context.config.tab_spaces() {
1827                     return Some(format!(" if {}", cond_str));
1828                 }
1829             }
1830         }
1831
1832         // Not enough space to put the guard after the pattern, try a newline.
1833         // 3 = `if `, 5 = ` => {`
1834         let cond_shape = Shape::indented(shape.indent.block_indent(context.config), context.config)
1835             .offset_left(3)
1836             .and_then(|s| s.sub_width(5));
1837         if let Some(cond_shape) = cond_shape {
1838             if let Some(cond_str) = guard.rewrite(context, cond_shape) {
1839                 return Some(format!(
1840                     "\n{}if {}",
1841                     cond_shape.indent.to_string(context.config),
1842                     cond_str
1843                 ));
1844             }
1845         }
1846
1847         None
1848     } else {
1849         Some(String::new())
1850     }
1851 }
1852
1853 fn rewrite_pat_expr(
1854     context: &RewriteContext,
1855     pat: Option<&ast::Pat>,
1856     expr: &ast::Expr,
1857     matcher: &str,
1858     // Connecting piece between pattern and expression,
1859     // *without* trailing space.
1860     connector: &str,
1861     keyword: &str,
1862     shape: Shape,
1863 ) -> Option<String> {
1864     debug!("rewrite_pat_expr {:?} {:?} {:?}", shape, pat, expr);
1865     if let Some(pat) = pat {
1866         let matcher = if matcher.is_empty() {
1867             matcher.to_owned()
1868         } else {
1869             format!("{} ", matcher)
1870         };
1871         let pat_shape = shape
1872             .offset_left(matcher.len())?
1873             .sub_width(connector.len())?;
1874         let pat_string = pat.rewrite(context, pat_shape)?;
1875         let result = format!("{}{}{}", matcher, pat_string, connector);
1876         return rewrite_assign_rhs(context, result, expr, shape);
1877     }
1878
1879     let expr_rw = expr.rewrite(context, shape);
1880     // The expression may (partially) fit on the current line.
1881     // We do not allow splitting between `if` and condition.
1882     if keyword == "if" || expr_rw.is_some() {
1883         return expr_rw;
1884     }
1885
1886     // The expression won't fit on the current line, jump to next.
1887     let nested_shape = shape
1888         .block_indent(context.config.tab_spaces())
1889         .with_max_width(context.config);
1890     let nested_indent_str = nested_shape.indent.to_string(context.config);
1891     expr.rewrite(context, nested_shape)
1892         .map(|expr_rw| format!("\n{}{}", nested_indent_str, expr_rw))
1893 }
1894
1895 pub fn rewrite_literal(context: &RewriteContext, l: &ast::Lit, shape: Shape) -> Option<String> {
1896     match l.node {
1897         ast::LitKind::Str(_, ast::StrStyle::Cooked) => rewrite_string_lit(context, l.span, shape),
1898         _ => Some(context.snippet(l.span)),
1899     }
1900 }
1901
1902 fn rewrite_string_lit(context: &RewriteContext, span: Span, shape: Shape) -> Option<String> {
1903     let string_lit = context.snippet(span);
1904
1905     if !context.config.format_strings() && !context.config.force_format_strings() {
1906         if string_lit
1907             .lines()
1908             .rev()
1909             .skip(1)
1910             .all(|line| line.ends_with('\\'))
1911         {
1912             let new_indent = shape.visual_indent(1).indent;
1913             return Some(String::from(
1914                 string_lit
1915                     .lines()
1916                     .map(|line| {
1917                         format!(
1918                             "{}{}",
1919                             new_indent.to_string(context.config),
1920                             line.trim_left()
1921                         )
1922                     })
1923                     .collect::<Vec<_>>()
1924                     .join("\n")
1925                     .trim_left(),
1926             ));
1927         } else {
1928             return Some(string_lit);
1929         }
1930     }
1931
1932     if !context.config.force_format_strings()
1933         && !string_requires_rewrite(context, span, &string_lit, shape)
1934     {
1935         return Some(string_lit);
1936     }
1937
1938     // Remove the quote characters.
1939     let str_lit = &string_lit[1..string_lit.len() - 1];
1940
1941     rewrite_string(str_lit, &StringFormat::new(shape, context.config))
1942 }
1943
1944 fn string_requires_rewrite(
1945     context: &RewriteContext,
1946     span: Span,
1947     string: &str,
1948     shape: Shape,
1949 ) -> bool {
1950     if context.codemap.lookup_char_pos(span.lo()).col.0 != shape.indent.width() {
1951         return true;
1952     }
1953
1954     for (i, line) in string.lines().enumerate() {
1955         if i == 0 {
1956             if line.len() > shape.width {
1957                 return true;
1958             }
1959         } else if line.len() > shape.width + shape.indent.width() {
1960             return true;
1961         }
1962     }
1963
1964     false
1965 }
1966
1967 pub fn rewrite_call(
1968     context: &RewriteContext,
1969     callee: &str,
1970     args: &[ptr::P<ast::Expr>],
1971     span: Span,
1972     shape: Shape,
1973 ) -> Option<String> {
1974     let force_trailing_comma = if context.inside_macro {
1975         span_ends_with_comma(context, span)
1976     } else {
1977         false
1978     };
1979     rewrite_call_inner(
1980         context,
1981         callee,
1982         &ptr_vec_to_ref_vec(&args),
1983         span,
1984         shape,
1985         context.config.fn_call_width(),
1986         force_trailing_comma,
1987     )
1988 }
1989
1990 pub fn rewrite_call_inner<'a, T>(
1991     context: &RewriteContext,
1992     callee_str: &str,
1993     args: &[&T],
1994     span: Span,
1995     shape: Shape,
1996     args_max_width: usize,
1997     force_trailing_comma: bool,
1998 ) -> Option<String>
1999 where
2000     T: Rewrite + Spanned + ToExpr + 'a,
2001 {
2002     // 2 = `( `, 1 = `(`
2003     let paren_overhead = if context.config.spaces_within_parens() {
2004         2
2005     } else {
2006         1
2007     };
2008     let used_width = extra_offset(callee_str, shape);
2009     let one_line_width = shape.width.checked_sub(used_width + 2 * paren_overhead)?;
2010
2011     let nested_shape = shape_from_fn_call_style(
2012         context,
2013         shape,
2014         used_width + 2 * paren_overhead,
2015         used_width + paren_overhead,
2016     )?;
2017
2018     let span_lo = context.codemap.span_after(span, "(");
2019     let args_span = mk_sp(span_lo, span.hi());
2020
2021     let (extendable, list_str) = rewrite_call_args(
2022         context,
2023         args,
2024         args_span,
2025         nested_shape,
2026         one_line_width,
2027         args_max_width,
2028         force_trailing_comma,
2029     )?;
2030
2031     if !context.use_block_indent() && need_block_indent(&list_str, nested_shape) && !extendable {
2032         let mut new_context = context.clone();
2033         new_context.use_block = true;
2034         return rewrite_call_inner(
2035             &new_context,
2036             callee_str,
2037             args,
2038             span,
2039             shape,
2040             args_max_width,
2041             force_trailing_comma,
2042         );
2043     }
2044
2045     let args_shape = shape.sub_width(last_line_width(callee_str))?;
2046     Some(format!(
2047         "{}{}",
2048         callee_str,
2049         wrap_args_with_parens(context, &list_str, extendable, args_shape, nested_shape)
2050     ))
2051 }
2052
2053 fn need_block_indent(s: &str, shape: Shape) -> bool {
2054     s.lines().skip(1).any(|s| {
2055         s.find(|c| !char::is_whitespace(c))
2056             .map_or(false, |w| w + 1 < shape.indent.width())
2057     })
2058 }
2059
2060 fn rewrite_call_args<'a, T>(
2061     context: &RewriteContext,
2062     args: &[&T],
2063     span: Span,
2064     shape: Shape,
2065     one_line_width: usize,
2066     args_max_width: usize,
2067     force_trailing_comma: bool,
2068 ) -> Option<(bool, String)>
2069 where
2070     T: Rewrite + Spanned + ToExpr + 'a,
2071 {
2072     let items = itemize_list(
2073         context.codemap,
2074         args.iter(),
2075         ")",
2076         |item| item.span().lo(),
2077         |item| item.span().hi(),
2078         |item| item.rewrite(context, shape),
2079         span.lo(),
2080         span.hi(),
2081         true,
2082     );
2083     let mut item_vec: Vec<_> = items.collect();
2084
2085     // Try letting the last argument overflow to the next line with block
2086     // indentation. If its first line fits on one line with the other arguments,
2087     // we format the function arguments horizontally.
2088     let tactic = try_overflow_last_arg(
2089         context,
2090         &mut item_vec,
2091         &args[..],
2092         shape,
2093         one_line_width,
2094         args_max_width,
2095     );
2096
2097     let fmt = ListFormatting {
2098         tactic: tactic,
2099         separator: ",",
2100         trailing_separator: if force_trailing_comma {
2101             SeparatorTactic::Always
2102         } else if context.inside_macro || !context.use_block_indent() {
2103             SeparatorTactic::Never
2104         } else {
2105             context.config.trailing_comma()
2106         },
2107         separator_place: SeparatorPlace::Back,
2108         shape: shape,
2109         ends_with_newline: context.use_block_indent() && tactic == DefinitiveListTactic::Vertical,
2110         preserve_newline: false,
2111         config: context.config,
2112     };
2113
2114     write_list(&item_vec, &fmt).map(|args_str| {
2115         (tactic != DefinitiveListTactic::Vertical, args_str)
2116     })
2117 }
2118
2119 fn try_overflow_last_arg<'a, T>(
2120     context: &RewriteContext,
2121     item_vec: &mut Vec<ListItem>,
2122     args: &[&T],
2123     shape: Shape,
2124     one_line_width: usize,
2125     args_max_width: usize,
2126 ) -> DefinitiveListTactic
2127 where
2128     T: Rewrite + Spanned + ToExpr + 'a,
2129 {
2130     let overflow_last = can_be_overflowed(context, args);
2131
2132     // Replace the last item with its first line to see if it fits with
2133     // first arguments.
2134     let placeholder = if overflow_last {
2135         let mut context = context.clone();
2136         if let Some(expr) = args[args.len() - 1].to_expr() {
2137             if let ast::ExprKind::MethodCall(..) = expr.node {
2138                 context.force_one_line_chain = true;
2139             }
2140         }
2141         last_arg_shape(&context, item_vec, shape, args_max_width).and_then(|arg_shape| {
2142             rewrite_last_arg_with_overflow(&context, args, &mut item_vec[args.len() - 1], arg_shape)
2143         })
2144     } else {
2145         None
2146     };
2147
2148     let mut tactic = definitive_tactic(
2149         &*item_vec,
2150         ListTactic::LimitedHorizontalVertical(args_max_width),
2151         Separator::Comma,
2152         one_line_width,
2153     );
2154
2155     // Replace the stub with the full overflowing last argument if the rewrite
2156     // succeeded and its first line fits with the other arguments.
2157     match (overflow_last, tactic, placeholder) {
2158         (true, DefinitiveListTactic::Horizontal, placeholder @ Some(..)) => {
2159             item_vec[args.len() - 1].item = placeholder;
2160         }
2161         _ if args.len() >= 1 => {
2162             item_vec[args.len() - 1].item = args.last()
2163                 .and_then(|last_arg| last_arg.rewrite(context, shape));
2164             // Use horizontal layout for a function with a single argument as long as
2165             // everything fits in a single line.
2166             if args.len() == 1
2167                 && args_max_width != 0 // Vertical layout is forced.
2168                 && !item_vec[0].has_comment()
2169                 && !item_vec[0].inner_as_ref().contains('\n')
2170                 && ::lists::total_item_width(&item_vec[0]) <= one_line_width
2171             {
2172                 tactic = DefinitiveListTactic::Horizontal;
2173             } else {
2174                 tactic = definitive_tactic(
2175                     &*item_vec,
2176                     ListTactic::LimitedHorizontalVertical(args_max_width),
2177                     Separator::Comma,
2178                     one_line_width,
2179                 );
2180             }
2181         }
2182         _ => (),
2183     }
2184
2185     tactic
2186 }
2187
2188 fn last_arg_shape(
2189     context: &RewriteContext,
2190     items: &[ListItem],
2191     shape: Shape,
2192     args_max_width: usize,
2193 ) -> Option<Shape> {
2194     let overhead = items.iter().rev().skip(1).fold(0, |acc, i| {
2195         acc + i.item.as_ref().map_or(0, |s| first_line_width(s))
2196     });
2197     let max_width = min(args_max_width, shape.width);
2198     let arg_indent = if context.use_block_indent() {
2199         shape.block().indent.block_unindent(context.config)
2200     } else {
2201         shape.block().indent
2202     };
2203     Some(Shape {
2204         width: max_width.checked_sub(overhead)?,
2205         indent: arg_indent,
2206         offset: 0,
2207     })
2208 }
2209
2210 // Rewriting closure which is placed at the end of the function call's arg.
2211 // Returns `None` if the reformatted closure 'looks bad'.
2212 fn rewrite_last_closure(
2213     context: &RewriteContext,
2214     expr: &ast::Expr,
2215     shape: Shape,
2216 ) -> Option<String> {
2217     if let ast::ExprKind::Closure(capture, ref fn_decl, ref body, _) = expr.node {
2218         let body = match body.node {
2219             ast::ExprKind::Block(ref block) if is_simple_block(block, context.codemap) => {
2220                 stmt_expr(&block.stmts[0]).unwrap_or(body)
2221             }
2222             _ => body,
2223         };
2224         let (prefix, extra_offset) =
2225             rewrite_closure_fn_decl(capture, fn_decl, body, expr.span, context, shape)?;
2226         // If the closure goes multi line before its body, do not overflow the closure.
2227         if prefix.contains('\n') {
2228             return None;
2229         }
2230         let body_shape = shape.offset_left(extra_offset)?;
2231         // When overflowing the closure which consists of a single control flow expression,
2232         // force to use block if its condition uses multi line.
2233         let is_multi_lined_cond = rewrite_cond(context, body, body_shape)
2234             .map(|cond| cond.contains('\n') || cond.len() > body_shape.width)
2235             .unwrap_or(false);
2236         if is_multi_lined_cond {
2237             return rewrite_closure_with_block(context, body_shape, &prefix, body);
2238         }
2239
2240         // Seems fine, just format the closure in usual manner.
2241         return expr.rewrite(context, shape);
2242     }
2243     None
2244 }
2245
2246 fn rewrite_last_arg_with_overflow<'a, T>(
2247     context: &RewriteContext,
2248     args: &[&T],
2249     last_item: &mut ListItem,
2250     shape: Shape,
2251 ) -> Option<String>
2252 where
2253     T: Rewrite + Spanned + ToExpr + 'a,
2254 {
2255     let last_arg = args[args.len() - 1];
2256     let rewrite = if let Some(expr) = last_arg.to_expr() {
2257         match expr.node {
2258             // When overflowing the closure which consists of a single control flow expression,
2259             // force to use block if its condition uses multi line.
2260             ast::ExprKind::Closure(..) => {
2261                 // If the argument consists of multiple closures, we do not overflow
2262                 // the last closure.
2263                 if args.len() > 1
2264                     && args.iter()
2265                         .rev()
2266                         .skip(1)
2267                         .filter_map(|arg| arg.to_expr())
2268                         .any(|expr| match expr.node {
2269                             ast::ExprKind::Closure(..) => true,
2270                             _ => false,
2271                         }) {
2272                     None
2273                 } else {
2274                     rewrite_last_closure(context, expr, shape)
2275                 }
2276             }
2277             _ => expr.rewrite(context, shape),
2278         }
2279     } else {
2280         last_arg.rewrite(context, shape)
2281     };
2282
2283     if let Some(rewrite) = rewrite {
2284         let rewrite_first_line = Some(rewrite[..first_line_width(&rewrite)].to_owned());
2285         last_item.item = rewrite_first_line;
2286         Some(rewrite)
2287     } else {
2288         None
2289     }
2290 }
2291
2292 fn can_be_overflowed<'a, T>(context: &RewriteContext, args: &[&T]) -> bool
2293 where
2294     T: Rewrite + Spanned + ToExpr + 'a,
2295 {
2296     args.last()
2297         .map_or(false, |x| x.can_be_overflowed(context, args.len()))
2298 }
2299
2300 pub fn can_be_overflowed_expr(context: &RewriteContext, expr: &ast::Expr, args_len: usize) -> bool {
2301     match expr.node {
2302         ast::ExprKind::Match(..) => {
2303             (context.use_block_indent() && args_len == 1)
2304                 || (context.config.fn_call_style() == IndentStyle::Visual && args_len > 1)
2305         }
2306         ast::ExprKind::If(..) |
2307         ast::ExprKind::IfLet(..) |
2308         ast::ExprKind::ForLoop(..) |
2309         ast::ExprKind::Loop(..) |
2310         ast::ExprKind::While(..) |
2311         ast::ExprKind::WhileLet(..) => {
2312             context.config.combine_control_expr() && context.use_block_indent() && args_len == 1
2313         }
2314         ast::ExprKind::Block(..) | ast::ExprKind::Closure(..) => {
2315             context.use_block_indent()
2316                 || context.config.fn_call_style() == IndentStyle::Visual && args_len > 1
2317         }
2318         ast::ExprKind::Array(..) |
2319         ast::ExprKind::Call(..) |
2320         ast::ExprKind::Mac(..) |
2321         ast::ExprKind::MethodCall(..) |
2322         ast::ExprKind::Struct(..) |
2323         ast::ExprKind::Tup(..) => context.use_block_indent() && args_len == 1,
2324         ast::ExprKind::AddrOf(_, ref expr) |
2325         ast::ExprKind::Box(ref expr) |
2326         ast::ExprKind::Try(ref expr) |
2327         ast::ExprKind::Unary(_, ref expr) |
2328         ast::ExprKind::Cast(ref expr, _) => can_be_overflowed_expr(context, expr, args_len),
2329         _ => false,
2330     }
2331 }
2332
2333 pub fn wrap_args_with_parens(
2334     context: &RewriteContext,
2335     args_str: &str,
2336     is_extendable: bool,
2337     shape: Shape,
2338     nested_shape: Shape,
2339 ) -> String {
2340     if !context.use_block_indent()
2341         || (context.inside_macro && !args_str.contains('\n')
2342             && args_str.len() + paren_overhead(context) <= shape.width) || is_extendable
2343     {
2344         if context.config.spaces_within_parens() && !args_str.is_empty() {
2345             format!("( {} )", args_str)
2346         } else {
2347             format!("({})", args_str)
2348         }
2349     } else {
2350         format!(
2351             "(\n{}{}\n{})",
2352             nested_shape.indent.to_string(context.config),
2353             args_str,
2354             shape.block().indent.to_string(context.config)
2355         )
2356     }
2357 }
2358
2359 fn span_ends_with_comma(context: &RewriteContext, span: Span) -> bool {
2360     let snippet = context.snippet(span);
2361     snippet
2362         .trim_right_matches(|c: char| c == ')' || c.is_whitespace())
2363         .ends_with(',')
2364 }
2365
2366 fn rewrite_paren(context: &RewriteContext, subexpr: &ast::Expr, shape: Shape) -> Option<String> {
2367     debug!("rewrite_paren, shape: {:?}", shape);
2368     let total_paren_overhead = paren_overhead(context);
2369     let paren_overhead = total_paren_overhead / 2;
2370     let sub_shape = shape
2371         .offset_left(paren_overhead)
2372         .and_then(|s| s.sub_width(paren_overhead))?;
2373
2374     let paren_wrapper = |s: &str| if context.config.spaces_within_parens() && !s.is_empty() {
2375         format!("( {} )", s)
2376     } else {
2377         format!("({})", s)
2378     };
2379
2380     let subexpr_str = subexpr.rewrite(context, sub_shape)?;
2381     debug!("rewrite_paren, subexpr_str: `{:?}`", subexpr_str);
2382
2383     if subexpr_str.contains('\n')
2384         || first_line_width(&subexpr_str) + total_paren_overhead <= shape.width
2385     {
2386         Some(paren_wrapper(&subexpr_str))
2387     } else {
2388         None
2389     }
2390 }
2391
2392 fn rewrite_index(
2393     expr: &ast::Expr,
2394     index: &ast::Expr,
2395     context: &RewriteContext,
2396     shape: Shape,
2397 ) -> Option<String> {
2398     let expr_str = expr.rewrite(context, shape)?;
2399
2400     let (lbr, rbr) = if context.config.spaces_within_square_brackets() {
2401         ("[ ", " ]")
2402     } else {
2403         ("[", "]")
2404     };
2405
2406     let offset = last_line_width(&expr_str) + lbr.len();
2407     let rhs_overhead = shape.rhs_overhead(context.config);
2408     let index_shape = if expr_str.contains('\n') {
2409         Shape::legacy(context.config.max_width(), shape.indent)
2410             .offset_left(offset)
2411             .and_then(|shape| shape.sub_width(rbr.len() + rhs_overhead))
2412     } else {
2413         shape.visual_indent(offset).sub_width(offset + rbr.len())
2414     };
2415     let orig_index_rw = index_shape.and_then(|s| index.rewrite(context, s));
2416
2417     // Return if index fits in a single line.
2418     match orig_index_rw {
2419         Some(ref index_str) if !index_str.contains('\n') => {
2420             return Some(format!("{}{}{}{}", expr_str, lbr, index_str, rbr));
2421         }
2422         _ => (),
2423     }
2424
2425     // Try putting index on the next line and see if it fits in a single line.
2426     let indent = shape.indent.block_indent(context.config);
2427     let index_shape = Shape::indented(indent, context.config).offset_left(lbr.len())?;
2428     let index_shape = index_shape.sub_width(rbr.len() + rhs_overhead)?;
2429     let new_index_rw = index.rewrite(context, index_shape);
2430     match (orig_index_rw, new_index_rw) {
2431         (_, Some(ref new_index_str)) if !new_index_str.contains('\n') => Some(format!(
2432             "{}\n{}{}{}{}",
2433             expr_str,
2434             indent.to_string(context.config),
2435             lbr,
2436             new_index_str,
2437             rbr
2438         )),
2439         (None, Some(ref new_index_str)) => Some(format!(
2440             "{}\n{}{}{}{}",
2441             expr_str,
2442             indent.to_string(context.config),
2443             lbr,
2444             new_index_str,
2445             rbr
2446         )),
2447         (Some(ref index_str), _) => Some(format!("{}{}{}{}", expr_str, lbr, index_str, rbr)),
2448         _ => None,
2449     }
2450 }
2451
2452 fn struct_lit_can_be_aligned(fields: &[ast::Field], base: &Option<&ast::Expr>) -> bool {
2453     if base.is_some() {
2454         return false;
2455     }
2456
2457     fields.iter().all(|field| !field.is_shorthand)
2458 }
2459
2460 fn rewrite_struct_lit<'a>(
2461     context: &RewriteContext,
2462     path: &ast::Path,
2463     fields: &'a [ast::Field],
2464     base: Option<&'a ast::Expr>,
2465     span: Span,
2466     shape: Shape,
2467 ) -> Option<String> {
2468     debug!("rewrite_struct_lit: shape {:?}", shape);
2469
2470     enum StructLitField<'a> {
2471         Regular(&'a ast::Field),
2472         Base(&'a ast::Expr),
2473     }
2474
2475     // 2 = " {".len()
2476     let path_shape = shape.sub_width(2)?;
2477     let path_str = rewrite_path(context, PathContext::Expr, None, path, path_shape)?;
2478
2479     if fields.is_empty() && base.is_none() {
2480         return Some(format!("{} {{}}", path_str));
2481     }
2482
2483     // Foo { a: Foo } - indent is +3, width is -5.
2484     let (h_shape, v_shape) = struct_lit_shape(shape, context, path_str.len() + 3, 2)?;
2485
2486     let one_line_width = h_shape.map_or(0, |shape| shape.width);
2487     let body_lo = context.codemap.span_after(span, "{");
2488     let fields_str = if struct_lit_can_be_aligned(fields, &base)
2489         && context.config.struct_field_align_threshold() > 0
2490     {
2491         rewrite_with_alignment(
2492             fields,
2493             context,
2494             shape,
2495             mk_sp(body_lo, span.hi()),
2496             one_line_width,
2497         )?
2498     } else {
2499         let field_iter = fields
2500             .into_iter()
2501             .map(StructLitField::Regular)
2502             .chain(base.into_iter().map(StructLitField::Base));
2503
2504         let span_lo = |item: &StructLitField| match *item {
2505             StructLitField::Regular(field) => field.span().lo(),
2506             StructLitField::Base(expr) => {
2507                 let last_field_hi = fields.last().map_or(span.lo(), |field| field.span.hi());
2508                 let snippet = context.snippet(mk_sp(last_field_hi, expr.span.lo()));
2509                 let pos = snippet.find_uncommented("..").unwrap();
2510                 last_field_hi + BytePos(pos as u32)
2511             }
2512         };
2513         let span_hi = |item: &StructLitField| match *item {
2514             StructLitField::Regular(field) => field.span().hi(),
2515             StructLitField::Base(expr) => expr.span.hi(),
2516         };
2517         let rewrite = |item: &StructLitField| match *item {
2518             StructLitField::Regular(field) => {
2519                 // The 1 taken from the v_budget is for the comma.
2520                 rewrite_field(context, field, v_shape.sub_width(1)?, 0)
2521             }
2522             StructLitField::Base(expr) => {
2523                 // 2 = ..
2524                 expr.rewrite(context, v_shape.offset_left(2)?)
2525                     .map(|s| format!("..{}", s))
2526             }
2527         };
2528
2529         let items = itemize_list(
2530             context.codemap,
2531             field_iter,
2532             "}",
2533             span_lo,
2534             span_hi,
2535             rewrite,
2536             body_lo,
2537             span.hi(),
2538             false,
2539         );
2540         let item_vec = items.collect::<Vec<_>>();
2541
2542         let tactic = struct_lit_tactic(h_shape, context, &item_vec);
2543         let nested_shape = shape_for_tactic(tactic, h_shape, v_shape);
2544         let fmt = struct_lit_formatting(nested_shape, tactic, context, base.is_some());
2545
2546         write_list(&item_vec, &fmt)?
2547     };
2548
2549     let fields_str = wrap_struct_field(context, &fields_str, shape, v_shape, one_line_width);
2550     Some(format!("{} {{{}}}", path_str, fields_str))
2551
2552     // FIXME if context.config.struct_lit_style() == Visual, but we run out
2553     // of space, we should fall back to BlockIndent.
2554 }
2555
2556 pub fn wrap_struct_field(
2557     context: &RewriteContext,
2558     fields_str: &str,
2559     shape: Shape,
2560     nested_shape: Shape,
2561     one_line_width: usize,
2562 ) -> String {
2563     if context.config.struct_lit_style() == IndentStyle::Block
2564         && (fields_str.contains('\n')
2565             || context.config.struct_lit_multiline_style() == MultilineStyle::ForceMulti
2566             || fields_str.len() > one_line_width)
2567     {
2568         format!(
2569             "\n{}{}\n{}",
2570             nested_shape.indent.to_string(context.config),
2571             fields_str,
2572             shape.indent.to_string(context.config)
2573         )
2574     } else {
2575         // One liner or visual indent.
2576         format!(" {} ", fields_str)
2577     }
2578 }
2579
2580 pub fn struct_lit_field_separator(config: &Config) -> &str {
2581     colon_spaces(
2582         config.space_before_struct_lit_field_colon(),
2583         config.space_after_struct_lit_field_colon(),
2584     )
2585 }
2586
2587 pub fn rewrite_field(
2588     context: &RewriteContext,
2589     field: &ast::Field,
2590     shape: Shape,
2591     prefix_max_width: usize,
2592 ) -> Option<String> {
2593     if contains_skip(&field.attrs) {
2594         return Some(context.snippet(field.span()));
2595     }
2596     let name = &field.ident.node.to_string();
2597     if field.is_shorthand {
2598         Some(name.to_string())
2599     } else {
2600         let mut separator = String::from(struct_lit_field_separator(context.config));
2601         for _ in 0..prefix_max_width.checked_sub(name.len()).unwrap_or(0) {
2602             separator.push(' ');
2603         }
2604         let overhead = name.len() + separator.len();
2605         let expr_shape = shape.offset_left(overhead)?;
2606         let expr = field.expr.rewrite(context, expr_shape);
2607
2608         let mut attrs_str = field.attrs.rewrite(context, shape)?;
2609         if !attrs_str.is_empty() {
2610             attrs_str.push_str(&format!("\n{}", shape.indent.to_string(context.config)));
2611         };
2612
2613         match expr {
2614             Some(e) => Some(format!("{}{}{}{}", attrs_str, name, separator, e)),
2615             None => {
2616                 let expr_offset = shape.indent.block_indent(context.config);
2617                 let expr = field
2618                     .expr
2619                     .rewrite(context, Shape::indented(expr_offset, context.config));
2620                 expr.map(|s| {
2621                     format!(
2622                         "{}{}:\n{}{}",
2623                         attrs_str,
2624                         name,
2625                         expr_offset.to_string(context.config),
2626                         s
2627                     )
2628                 })
2629             }
2630         }
2631     }
2632 }
2633
2634 fn shape_from_fn_call_style(
2635     context: &RewriteContext,
2636     shape: Shape,
2637     overhead: usize,
2638     offset: usize,
2639 ) -> Option<Shape> {
2640     if context.use_block_indent() {
2641         // 1 = ","
2642         shape
2643             .block()
2644             .block_indent(context.config.tab_spaces())
2645             .with_max_width(context.config)
2646             .sub_width(1)
2647     } else {
2648         shape.visual_indent(offset).sub_width(overhead)
2649     }
2650 }
2651
2652 fn rewrite_tuple_in_visual_indent_style<'a, T>(
2653     context: &RewriteContext,
2654     items: &[&T],
2655     span: Span,
2656     shape: Shape,
2657 ) -> Option<String>
2658 where
2659     T: Rewrite + Spanned + ToExpr + 'a,
2660 {
2661     let mut items = items.iter();
2662     // In case of length 1, need a trailing comma
2663     debug!("rewrite_tuple_in_visual_indent_style {:?}", shape);
2664     if items.len() == 1 {
2665         // 3 = "(" + ",)"
2666         let nested_shape = shape.sub_width(3)?.visual_indent(1);
2667         return items.next().unwrap().rewrite(context, nested_shape).map(
2668             |s| if context.config.spaces_within_parens() {
2669                 format!("( {}, )", s)
2670             } else {
2671                 format!("({},)", s)
2672             },
2673         );
2674     }
2675
2676     let list_lo = context.codemap.span_after(span, "(");
2677     let nested_shape = shape.sub_width(2)?.visual_indent(1);
2678     let items = itemize_list(
2679         context.codemap,
2680         items,
2681         ")",
2682         |item| item.span().lo(),
2683         |item| item.span().hi(),
2684         |item| item.rewrite(context, nested_shape),
2685         list_lo,
2686         span.hi() - BytePos(1),
2687         false,
2688     );
2689     let item_vec: Vec<_> = items.collect();
2690     let tactic = definitive_tactic(
2691         &item_vec,
2692         ListTactic::HorizontalVertical,
2693         Separator::Comma,
2694         nested_shape.width,
2695     );
2696     let fmt = ListFormatting {
2697         tactic: tactic,
2698         separator: ",",
2699         trailing_separator: SeparatorTactic::Never,
2700         separator_place: SeparatorPlace::Back,
2701         shape: shape,
2702         ends_with_newline: false,
2703         preserve_newline: false,
2704         config: context.config,
2705     };
2706     let list_str = write_list(&item_vec, &fmt)?;
2707
2708     if context.config.spaces_within_parens() && !list_str.is_empty() {
2709         Some(format!("( {} )", list_str))
2710     } else {
2711         Some(format!("({})", list_str))
2712     }
2713 }
2714
2715 pub fn rewrite_tuple<'a, T>(
2716     context: &RewriteContext,
2717     items: &[&T],
2718     span: Span,
2719     shape: Shape,
2720 ) -> Option<String>
2721 where
2722     T: Rewrite + Spanned + ToExpr + 'a,
2723 {
2724     debug!("rewrite_tuple {:?}", shape);
2725     if context.use_block_indent() {
2726         // We use the same rule as function calls for rewriting tuples.
2727         let force_trailing_comma = if context.inside_macro {
2728             span_ends_with_comma(context, span)
2729         } else {
2730             items.len() == 1
2731         };
2732         rewrite_call_inner(
2733             context,
2734             &String::new(),
2735             items,
2736             span,
2737             shape,
2738             context.config.fn_call_width(),
2739             force_trailing_comma,
2740         )
2741     } else {
2742         rewrite_tuple_in_visual_indent_style(context, items, span, shape)
2743     }
2744 }
2745
2746 pub fn rewrite_unary_prefix<R: Rewrite>(
2747     context: &RewriteContext,
2748     prefix: &str,
2749     rewrite: &R,
2750     shape: Shape,
2751 ) -> Option<String> {
2752     rewrite
2753         .rewrite(context, shape.offset_left(prefix.len())?)
2754         .map(|r| format!("{}{}", prefix, r))
2755 }
2756
2757 // FIXME: this is probably not correct for multi-line Rewrites. we should
2758 // subtract suffix.len() from the last line budget, not the first!
2759 pub fn rewrite_unary_suffix<R: Rewrite>(
2760     context: &RewriteContext,
2761     suffix: &str,
2762     rewrite: &R,
2763     shape: Shape,
2764 ) -> Option<String> {
2765     rewrite
2766         .rewrite(context, shape.sub_width(suffix.len())?)
2767         .map(|mut r| {
2768             r.push_str(suffix);
2769             r
2770         })
2771 }
2772
2773 fn rewrite_unary_op(
2774     context: &RewriteContext,
2775     op: &ast::UnOp,
2776     expr: &ast::Expr,
2777     shape: Shape,
2778 ) -> Option<String> {
2779     // For some reason, an UnOp is not spanned like BinOp!
2780     let operator_str = match *op {
2781         ast::UnOp::Deref => "*",
2782         ast::UnOp::Not => "!",
2783         ast::UnOp::Neg => "-",
2784     };
2785     rewrite_unary_prefix(context, operator_str, expr, shape)
2786 }
2787
2788 fn rewrite_assignment(
2789     context: &RewriteContext,
2790     lhs: &ast::Expr,
2791     rhs: &ast::Expr,
2792     op: Option<&ast::BinOp>,
2793     shape: Shape,
2794 ) -> Option<String> {
2795     let operator_str = match op {
2796         Some(op) => context.snippet(op.span),
2797         None => "=".to_owned(),
2798     };
2799
2800     // 1 = space between lhs and operator.
2801     let lhs_shape = shape.sub_width(operator_str.len() + 1)?;
2802     let lhs_str = format!("{} {}", lhs.rewrite(context, lhs_shape)?, operator_str);
2803
2804     rewrite_assign_rhs(context, lhs_str, rhs, shape)
2805 }
2806
2807 // The left hand side must contain everything up to, and including, the
2808 // assignment operator.
2809 pub fn rewrite_assign_rhs<S: Into<String>>(
2810     context: &RewriteContext,
2811     lhs: S,
2812     ex: &ast::Expr,
2813     shape: Shape,
2814 ) -> Option<String> {
2815     let lhs = lhs.into();
2816     let last_line_width = last_line_width(&lhs) - if lhs.contains('\n') {
2817         shape.indent.width()
2818     } else {
2819         0
2820     };
2821     // 1 = space between operator and rhs.
2822     let orig_shape = shape.offset_left(last_line_width + 1)?;
2823     let rhs = choose_rhs(context, ex, orig_shape, ex.rewrite(context, orig_shape))?;
2824     Some(lhs + &rhs)
2825 }
2826
2827 fn choose_rhs(
2828     context: &RewriteContext,
2829     expr: &ast::Expr,
2830     shape: Shape,
2831     orig_rhs: Option<String>,
2832 ) -> Option<String> {
2833     match orig_rhs {
2834         Some(ref new_str) if !new_str.contains('\n') && new_str.len() <= shape.width => {
2835             Some(format!(" {}", new_str))
2836         }
2837         _ => {
2838             // Expression did not fit on the same line as the identifier.
2839             // Try splitting the line and see if that works better.
2840             let new_shape = Shape::indented(
2841                 shape.block().indent.block_indent(context.config),
2842                 context.config,
2843             ).sub_width(shape.rhs_overhead(context.config))?;
2844             let new_rhs = expr.rewrite(context, new_shape);
2845             let new_indent_str = &new_shape.indent.to_string(context.config);
2846
2847             match (orig_rhs, new_rhs) {
2848                 (Some(ref orig_rhs), Some(ref new_rhs)) if prefer_next_line(orig_rhs, new_rhs) => {
2849                     Some(format!("\n{}{}", new_indent_str, new_rhs))
2850                 }
2851                 (None, Some(ref new_rhs)) => Some(format!("\n{}{}", new_indent_str, new_rhs)),
2852                 (None, None) => None,
2853                 (Some(ref orig_rhs), _) => Some(format!(" {}", orig_rhs)),
2854             }
2855         }
2856     }
2857 }
2858
2859 fn prefer_next_line(orig_rhs: &str, next_line_rhs: &str) -> bool {
2860     fn count_line_breaks(src: &str) -> usize {
2861         src.chars().filter(|&x| x == '\n').count()
2862     }
2863
2864     !next_line_rhs.contains('\n')
2865         || count_line_breaks(orig_rhs) > count_line_breaks(next_line_rhs) + 1
2866 }
2867
2868 fn rewrite_expr_addrof(
2869     context: &RewriteContext,
2870     mutability: ast::Mutability,
2871     expr: &ast::Expr,
2872     shape: Shape,
2873 ) -> Option<String> {
2874     let operator_str = match mutability {
2875         ast::Mutability::Immutable => "&",
2876         ast::Mutability::Mutable => "&mut ",
2877     };
2878     rewrite_unary_prefix(context, operator_str, expr, shape)
2879 }
2880
2881 pub trait ToExpr {
2882     fn to_expr(&self) -> Option<&ast::Expr>;
2883     fn can_be_overflowed(&self, context: &RewriteContext, len: usize) -> bool;
2884 }
2885
2886 impl ToExpr for ast::Expr {
2887     fn to_expr(&self) -> Option<&ast::Expr> {
2888         Some(self)
2889     }
2890
2891     fn can_be_overflowed(&self, context: &RewriteContext, len: usize) -> bool {
2892         can_be_overflowed_expr(context, self, len)
2893     }
2894 }
2895
2896 impl ToExpr for ast::Ty {
2897     fn to_expr(&self) -> Option<&ast::Expr> {
2898         None
2899     }
2900
2901     fn can_be_overflowed(&self, context: &RewriteContext, len: usize) -> bool {
2902         can_be_overflowed_type(context, self, len)
2903     }
2904 }
2905
2906 impl<'a> ToExpr for TuplePatField<'a> {
2907     fn to_expr(&self) -> Option<&ast::Expr> {
2908         None
2909     }
2910
2911     fn can_be_overflowed(&self, context: &RewriteContext, len: usize) -> bool {
2912         can_be_overflowed_pat(context, self, len)
2913     }
2914 }
2915
2916 impl<'a> ToExpr for ast::StructField {
2917     fn to_expr(&self) -> Option<&ast::Expr> {
2918         None
2919     }
2920
2921     fn can_be_overflowed(&self, _: &RewriteContext, _: usize) -> bool {
2922         false
2923     }
2924 }
2925
2926 impl<'a> ToExpr for MacroArg {
2927     fn to_expr(&self) -> Option<&ast::Expr> {
2928         match *self {
2929             MacroArg::Expr(ref expr) => Some(expr),
2930             _ => None,
2931         }
2932     }
2933
2934     fn can_be_overflowed(&self, context: &RewriteContext, len: usize) -> bool {
2935         match *self {
2936             MacroArg::Expr(ref expr) => can_be_overflowed_expr(context, expr, len),
2937             MacroArg::Ty(ref ty) => can_be_overflowed_type(context, ty, len),
2938             MacroArg::Pat(..) => false,
2939         }
2940     }
2941 }