This commit is contained in:
Mark Thom
2020-05-22 14:50:51 -06:00
4 changed files with 64 additions and 1 deletions

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@@ -353,7 +353,7 @@ The modules that ship with Scryer Prolog are also called
* [`format`](src/prolog/lib/format.pl)
The nonterminal `format_//2` is used to describe formatted output,
arranging arguments according to a given format string.
The predicates `format/2`, `portray_clause/1` and `listing/1`
The predicates `format/[2,3]`, `portray_clause/1` and `listing/1`
provide formatted *impure* output.
* [`assoc`](src/prolog/lib/assoc.pl)
providing `empty_assoc/1`, `get_assoc/3`, `put_assoc/4` etc.

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@@ -229,6 +229,7 @@ pub enum SystemClauseType {
PeekCode,
PointsToContinuationResetMarker,
PutByte,
PutBytes,
PutChar,
PutCode,
REPL(REPLCodePtr),
@@ -415,6 +416,9 @@ impl SystemClauseType {
&SystemClauseType::PutByte => {
clause_name!("$put_byte")
}
&SystemClauseType::PutBytes => {
clause_name!("$put_bytes")
}
&SystemClauseType::PutChar => {
clause_name!("$put_char")
}
@@ -552,6 +556,9 @@ impl SystemClauseType {
("$put_byte", 2) => {
Some(SystemClauseType::PutByte)
}
("$put_bytes", 2) => {
Some(SystemClauseType::PutBytes)
}
("$put_char", 2) => {
Some(SystemClauseType::PutChar)
}

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@@ -49,6 +49,10 @@
The predicate format/2 is like format_//2, except that it outputs
the text on the terminal instead of describing it declaratively.
format/3, used as format(Stream, FormatString, Arguments), outputs
the described string to the given Stream. If Stream is a binary
stream, then the code of each emitted character must be in 0..255.
If at all possible, format_//2 should be used, to stress pure parts
that enable easy testing etc. If necessary, you can emit the list Ls
with maplist(write, Ls).
@@ -68,6 +72,7 @@
:- module(format, [format_//2,
format/2,
format/3,
portray_clause/1,
listing/1
]).
@@ -359,6 +364,26 @@ format(Fs, Args) :-
phrase(format_(Fs, Args), Cs),
maplist(write, Cs).
format(Stream, Fs, Args) :-
phrase(format_(Fs, Args), Cs),
( stream_property(Stream, type(binary)) ->
% maplist(char_code, Cs, Bytes) is currently a lot slower
% than first converting Cs to an atom, and then to codes.
% In the future, we can ideally avoid creating an atom here,
% since an atom leaves traces in the system.
atom_chars(A, Cs),
atom_codes(A, Bytes),
( member(NonByte, Bytes), NonByte > 255 ->
char_code(Char, NonByte),
throw(error(representation_error(Char), format/3))
; true
),
% For binary streams, we use a specialised internal predicate
% that uses only a single "write" operation for efficiency.
'$put_bytes'(Stream, Bytes)
; maplist(put_char(Stream), Cs)
).
/* - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - - -
?- phrase(cells("hello", [], 0, []), Cs).

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@@ -2153,6 +2153,37 @@ impl MachineState {
}
}
}
&SystemClauseType::PutBytes => {
let mut stream =
self.get_stream_or_alias(self[temp_v!(1)], indices, "$put_bytes", 2)?;
let stub = MachineError::functor_stub(clause_name!("$put_bytes"), 2);
let bytes = self.integers_to_bytevec(temp_v!(2), stub);
match stream.write(&bytes) {
Ok(_) => {
return return_from_clause!(self.last_call, self);
}
_ => {
let stub = MachineError::functor_stub(
clause_name!("$put_bytes"),
2,
);
let addr = self.heap.to_unifiable(
HeapCellValue::Stream(stream.clone()),
);
return Err(self.error_form(
MachineError::existence_error(
self.heap.h(),
ExistenceError::Stream(addr),
),
stub,
));
}
}
}
&SystemClauseType::GetByte => {
let mut stream =
self.get_stream_or_alias(self[temp_v!(1)], indices, "get_byte", 2)?;