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Support for non-blocking I/O
* doc/ref/api-io.texi (I/O Extensions): Document read_wait_fd / write_wait_fd members. (Non-Blocking I/O): New section. * libguile/fports.c (fport_read, fport_write): Return -1 if the operation would block. (fport_wait_fd, scm_make_fptob): Add read/write wait-fd implementation. * libguile/ports-internal.h (scm_t_port_type): Add read_wait_fd / write_wait_fd. * libguile/ports.c (default_read_wait_fd, default_write_wait_fd): New functions. (scm_make_port_type): Initialize default read/write wait fd impls. (trampoline_to_c_read, trampoline_to_scm_read) (trampoline_to_c_write, trampoline_to_scm_write): To Scheme, a return of #f indicates EWOULDBLOCk. (scm_set_port_read_wait_fd, scm_set_port_write_wait_fd): New functions. (port_read_wait_fd, port_write_wait_fd, scm_port_read_wait_fd) (scm_port_write_wait_fd, port_poll, scm_port_poll): New functions. (scm_i_read_bytes, scm_i_write_bytes): Poll if the read or write would block. * libguile/ports.h (scm_set_port_read_wait_fd) (scm_set_port_write_wait_fd): Add declarations. * module/ice-9/ports.scm: Shunt port-poll and port-{read,write}-wait-fd to the internals module. * module/ice-9/sports.scm (current-write-waiter): (current-read-waiter): Implement. * test-suite/tests/ports.test: Adapt non-blocking test to new behavior. * NEWS: Add entry.
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9 changed files with 344 additions and 42 deletions
4
NEWS
4
NEWS
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@ -38,6 +38,10 @@ is equivalent to an unbuffered port. Ports may set their default buffer
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sizes, and some ports (for example soft ports) are unbuffered by default
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for historical reasons.
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** Support for non-blocking I/O
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See "Non-Blocking I/O" in the manual, for more.
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** Removal of port locks
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As part of the 2.2 series, we introduced recursive locks on each port,
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@ -20,6 +20,7 @@
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* Port Types:: Types of port and how to make them.
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* R6RS I/O Ports:: The R6RS port API.
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* I/O Extensions:: Implementing new port types in C.
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* Non-Blocking I/O:: How Guile deals with EWOULDBLOCK.
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* BOM Handling:: Handling of Unicode byte order marks.
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@end menu
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@ -2302,6 +2303,24 @@ It should write out bytes from the supplied bytevector @code{src},
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starting at offset @code{start} and continuing for @code{count} bytes,
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and return the number of bytes that were written.
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@item read_wait_fd
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@itemx write_wait_fd
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If a port's @code{read} or @code{write} function returns @code{(size_t)
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-1}, that indicates that reading or writing would block. In that case
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to preserve the illusion of a blocking read or write operation, Guile's
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C port run-time will @code{poll} on the file descriptor returned by
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either the port's @code{read_wait_fd} or @code{write_wait_fd} function.
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Set using
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@deftypefun void scm_set_port_read_wait_fd (scm_t_port_type *type, int (*wait_fd) (SCM port))
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@deftypefunx void scm_set_port_write_wait_fd (scm_t_port_type *type, int (*wait_fd) (SCM port))
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@end deftypefun
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Only a port type which implements the @code{read_wait_fd} or
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@code{write_wait_fd} port methods can usefully return @code{(size_t) -1}
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from a read or write function. @xref{Non-Blocking I/O}, for more on
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non-blocking I/O in Guile.
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@item print
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Called when @code{write} is called on the port, to print a port
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description. For example, for a file port it may produce something
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@ -2384,6 +2403,74 @@ operating system inform Guile about the appropriate buffer sizes for the
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particular file opened by the port.
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@end table
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@node Non-Blocking I/O
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@subsection Non-Blocking I/O
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Most ports in Guile are @dfn{blocking}: when you try to read a character
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from a port, Guile will block on the read until a character is ready, or
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end-of-stream is detected. Likewise whenever Guile goes to write
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(possibly buffered) data to an output port, Guile will block until all
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the data is written.
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Interacting with ports in blocking mode is very convenient: you can
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write straightforward, sequential algorithms whose code flow reflects
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the flow of data. However, blocking I/O has two main limitations.
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The first is that it's easy to get into a situation where code is
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waiting on data. Time spent waiting on data when code could be doing
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something else is wasteful and prevents your program from reaching its
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peak throughput. If you implement a web server that sequentially
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handles requests from clients, it's very easy for the server to end up
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waiting on a client to finish its HTTP request, or waiting on it to
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consume the response. The end result is that you are able to serve
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fewer requests per second than you'd like to serve.
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The second limitation is related: a blocking parser over user-controlled
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input is a denial-of-service vulnerability. Indeed the so-called ``slow
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loris'' attack of the early 2010s was just that: an attack on common web
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servers that drip-fed HTTP requests, one character at a time. All it
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took was a handful of slow loris connections to occupy an entire web
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server.
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In Guile we would like to preserve the ability to write straightforward
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blocking networking processes of all kinds, but under the hood to allow
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those processes to suspend their requests if they would block.
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To do this, the first piece is to allow Guile ports to declare
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themselves as being nonblocking. This is currently supported only for
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file ports, which also includes sockets, terminals, or any other port
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that is backed by a file descriptor. To do that, we use an arcane UNIX
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incantation:
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@example
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(let ((flags (fcntl socket F_GETFL)))
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(fcntl socket F_SETFL (logior O_NONBLOCK flags)))
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@end example
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Now the file descriptor is open in non-blocking mode. If Guile tries to
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read or write from this file descriptor in C, it will block by polling
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on the socket's @code{read_wait_fd}, to preserve the illusion of a
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blocking read or write. @xref{I/O Extensions} for more on that internal
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interface.
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However if a user uses the new and experimental Scheme implementation of
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ports in @code{(ice-9 sports)}, Guile instead calls the value of the
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@code{current-read-waiter} or @code{current-write-waiter} parameters on
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the port before re-trying the read or write. The default value of these
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parameters does the same thing as the C port runtime: it blocks.
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However it's possible to dynamically bind these parameters to handlers
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that can suspend the current coroutine to a scheduler, to be later
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re-animated once the port becomes readable or writable in the future.
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In the mean-time the scheduler can run other code, for example servicing
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other web requests.
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Guile does not currently include such a scheduler. Currently we want to
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make sure that we're providing the right primitives that can be used to
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build schedulers and other user-space concurrency patterns. In the
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meantime, have a look at 8sync (@url{https://gnu.org/software/8sync})
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for a prototype of an asynchronous I/O and concurrency facility.
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@node BOM Handling
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@subsection Handling of Unicode byte order marks.
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@cindex BOM
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@ -573,14 +573,24 @@ fport_print (SCM exp, SCM port, scm_print_state *pstate SCM_UNUSED)
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static size_t
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fport_read (SCM port, SCM dst, size_t start, size_t count)
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{
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long res;
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scm_t_fport *fp = SCM_FSTREAM (port);
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signed char *ptr = SCM_BYTEVECTOR_CONTENTS (dst) + start;
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ssize_t ret;
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SCM_SYSCALL (res = read (fp->fdes, ptr, count));
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if (res == -1)
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scm_syserror ("fport_read");
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return res;
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retry:
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ret = read (fp->fdes, ptr, count);
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if (ret < 0)
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{
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if (errno == EINTR)
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{
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SCM_ASYNC_TICK;
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goto retry;
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}
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if (errno == EWOULDBLOCK || errno == EAGAIN)
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return -1;
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scm_syserror ("fport_read");
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}
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return ret;
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}
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static size_t
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{
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int fd = SCM_FPORT_FDES (port);
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signed char *ptr = SCM_BYTEVECTOR_CONTENTS (src) + start;
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ssize_t ret;
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if (full_write (fd, ptr, count) < count)
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scm_syserror ("fport_write");
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retry:
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ret = write (fd, ptr, count);
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if (ret < 0)
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{
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if (errno == EINTR)
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{
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SCM_ASYNC_TICK;
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goto retry;
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}
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if (errno == EWOULDBLOCK || errno == EAGAIN)
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return -1;
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scm_syserror ("fport_write");
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}
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return count;
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return ret;
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}
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static scm_t_off
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@ -637,6 +659,12 @@ fport_random_access_p (SCM port)
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return SCM_FDES_RANDOM_P (SCM_FSTREAM (port)->fdes);
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}
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static int
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fport_wait_fd (SCM port)
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{
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return SCM_FSTREAM (port)->fdes;
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}
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/* Query the OS to get the natural buffering for FPORT, if available. */
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static void
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fport_get_natural_buffer_sizes (SCM port, size_t *read_size, size_t *write_size)
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@ -660,6 +688,8 @@ scm_make_fptob ()
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scm_set_port_close (ptob, fport_close);
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scm_set_port_seek (ptob, fport_seek);
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scm_set_port_truncate (ptob, fport_truncate);
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scm_set_port_read_wait_fd (ptob, fport_wait_fd);
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scm_set_port_write_wait_fd (ptob, fport_wait_fd);
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scm_set_port_input_waiting (ptob, fport_input_waiting);
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scm_set_port_random_access_p (ptob, fport_random_access_p);
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scm_set_port_get_natural_buffer_sizes (ptob, fport_get_natural_buffer_sizes);
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@ -44,6 +44,9 @@ struct scm_t_port_type
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SCM scm_read;
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SCM scm_write;
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int (*read_wait_fd) (SCM port);
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int (*write_wait_fd) (SCM port);
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scm_t_off (*seek) (SCM port, scm_t_off OFFSET, int WHENCE);
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void (*close) (SCM port);
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179
libguile/ports.c
179
libguile/ports.c
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@ -33,6 +33,7 @@
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#include <fcntl.h> /* for chsize on mingw */
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#include <assert.h>
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#include <iconv.h>
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#include <poll.h>
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#include <uniconv.h>
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#include <unistr.h>
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#include <striconveh.h>
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@ -126,6 +127,18 @@ default_random_access_p (SCM port)
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return SCM_PORT_TYPE (port)->seek != NULL;
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}
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static int
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default_read_wait_fd (SCM port)
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{
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scm_misc_error ("read_wait_fd", "unimplemented", SCM_EOL);
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}
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static int
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default_write_wait_fd (SCM port)
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{
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scm_misc_error ("write_wait_fd", "unimplemented", SCM_EOL);
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}
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scm_t_port_type *
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scm_make_port_type (char *name,
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size_t (*read) (SCM port, SCM dst, size_t start,
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desc->c_write = write;
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desc->scm_read = read ? trampoline_to_c_read_subr : SCM_BOOL_F;
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desc->scm_write = write ? trampoline_to_c_write_subr : SCM_BOOL_F;
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desc->read_wait_fd = default_read_wait_fd;
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desc->write_wait_fd = default_write_wait_fd;
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desc->random_access_p = default_random_access_p;
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scm_make_port_classes (desc);
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trampoline_to_c_read (SCM port, SCM dst, SCM start, SCM count)
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#define FUNC_NAME "port-read"
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{
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size_t c_start, c_count;
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size_t c_start, c_count, ret;
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SCM_VALIDATE_OPPORT (1, port);
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c_start = scm_to_size_t (start);
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@ -162,24 +177,25 @@ trampoline_to_c_read (SCM port, SCM dst, SCM start, SCM count)
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SCM_ASSERT_RANGE (2, start, c_start <= c_count);
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SCM_ASSERT_RANGE (3, count, c_start+c_count <= scm_c_bytevector_length (dst));
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return scm_from_size_t
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(SCM_PORT_TYPE (port)->c_read (port, dst, c_start, c_count));
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ret = SCM_PORT_TYPE (port)->c_read (port, dst, c_start, c_count);
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return ret == (size_t) -1 ? SCM_BOOL_F : scm_from_size_t (ret);
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}
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#undef FUNC_NAME
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static size_t
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trampoline_to_scm_read (SCM port, SCM dst, size_t start, size_t count)
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{
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return scm_to_size_t
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(scm_call_4 (SCM_PORT_TYPE (port)->scm_read, port, dst,
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scm_from_size_t (start), scm_from_size_t (count)));
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SCM ret = scm_call_4 (SCM_PORT_TYPE (port)->scm_read, port, dst,
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scm_from_size_t (start), scm_from_size_t (count));
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return scm_is_true (ret) ? scm_to_size_t (ret) : (size_t) -1;
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}
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static SCM
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trampoline_to_c_write (SCM port, SCM src, SCM start, SCM count)
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#define FUNC_NAME "port-write"
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{
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size_t c_start, c_count;
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size_t c_start, c_count, ret;
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SCM_VALIDATE_OPPORT (1, port);
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c_start = scm_to_size_t (start);
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@ -187,17 +203,18 @@ trampoline_to_c_write (SCM port, SCM src, SCM start, SCM count)
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SCM_ASSERT_RANGE (2, start, c_start <= c_count);
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SCM_ASSERT_RANGE (3, count, c_start+c_count <= scm_c_bytevector_length (src));
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return scm_from_size_t
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(SCM_PORT_TYPE (port)->c_write (port, src, c_start, c_count));
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ret = SCM_PORT_TYPE (port)->c_write (port, src, c_start, c_count);
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return ret == (size_t) -1 ? SCM_BOOL_F : scm_from_size_t (ret);
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}
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#undef FUNC_NAME
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static size_t
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trampoline_to_scm_write (SCM port, SCM src, size_t start, size_t count)
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{
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return scm_to_size_t
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(scm_call_4 (SCM_PORT_TYPE (port)->scm_write, port, src,
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scm_from_size_t (start), scm_from_size_t (count)));
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SCM ret = scm_call_4 (SCM_PORT_TYPE (port)->scm_write, port, src,
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scm_from_size_t (start), scm_from_size_t (count));
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return scm_is_true (ret) ? scm_to_size_t (ret) : (size_t) -1;
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}
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void
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@ -214,6 +231,18 @@ scm_set_port_scm_write (scm_t_port_type *ptob, SCM write)
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ptob->c_write = trampoline_to_scm_write;
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}
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void
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scm_set_port_read_wait_fd (scm_t_port_type *ptob, int (*get_fd) (SCM))
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{
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ptob->read_wait_fd = get_fd;
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}
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void
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scm_set_port_write_wait_fd (scm_t_port_type *ptob, int (*get_fd) (SCM))
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{
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ptob->write_wait_fd = get_fd;
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}
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void
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scm_set_port_print (scm_t_port_type *ptob,
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int (*print) (SCM exp, SCM port, scm_print_state *pstate))
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@ -1230,6 +1259,116 @@ SCM_DEFINE (scm_set_port_conversion_strategy_x, "set-port-conversion-strategy!",
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#undef FUNC_NAME
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/* Non-blocking I/O. */
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static int
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port_read_wait_fd (SCM port)
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{
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scm_t_port_type *ptob = SCM_PORT_TYPE (port);
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return ptob->read_wait_fd (port);
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}
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static int
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port_write_wait_fd (SCM port)
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{
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scm_t_port_type *ptob = SCM_PORT_TYPE (port);
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return ptob->write_wait_fd (port);
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}
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SCM_INTERNAL SCM scm_port_read_wait_fd (SCM);
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SCM_DEFINE (scm_port_read_wait_fd, "port-read-wait-fd", 1, 0, 0,
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(SCM port), "")
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#define FUNC_NAME s_scm_port_read_wait_fd
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{
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int fd;
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port = SCM_COERCE_OUTPORT (port);
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SCM_VALIDATE_OPINPORT (1, port);
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fd = port_read_wait_fd (port);
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return fd < 0 ? SCM_BOOL_F : scm_from_int (fd);
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}
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#undef FUNC_NAME
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SCM_INTERNAL SCM scm_port_write_wait_fd (SCM);
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SCM_DEFINE (scm_port_write_wait_fd, "port-write-wait-fd", 1, 0, 0,
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(SCM port), "")
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#define FUNC_NAME s_scm_port_write_wait_fd
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{
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int fd;
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port = SCM_COERCE_OUTPORT (port);
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SCM_VALIDATE_OPOUTPORT (1, port);
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fd = port_write_wait_fd (port);
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return fd < 0 ? SCM_BOOL_F : scm_from_int (fd);
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}
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#undef FUNC_NAME
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static int
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port_poll (SCM port, short events, int timeout)
|
||||
#define FUNC_NAME "port-poll"
|
||||
{
|
||||
struct pollfd pollfd[2];
|
||||
int nfds = 0, rv = 0;
|
||||
|
||||
if (events & POLLIN)
|
||||
{
|
||||
pollfd[nfds].fd = port_read_wait_fd (port);
|
||||
pollfd[nfds].events = events & (POLLIN | POLLPRI);
|
||||
pollfd[nfds].revents = 0;
|
||||
nfds++;
|
||||
}
|
||||
if (events & POLLOUT)
|
||||
{
|
||||
pollfd[nfds].fd = port_write_wait_fd (port);
|
||||
pollfd[nfds].events = events & (POLLOUT | POLLPRI);
|
||||
pollfd[nfds].revents = 0;
|
||||
nfds++;
|
||||
}
|
||||
|
||||
if (nfds == 2 && pollfd[0].fd == pollfd[1].fd)
|
||||
{
|
||||
pollfd[0].events |= pollfd[1].events;
|
||||
nfds--;
|
||||
}
|
||||
|
||||
SCM_SYSCALL (rv = poll (pollfd, nfds, timeout));
|
||||
if (rv < 0)
|
||||
SCM_SYSERROR;
|
||||
|
||||
return rv;
|
||||
}
|
||||
#undef FUNC_NAME
|
||||
|
||||
SCM_INTERNAL SCM scm_port_poll (SCM, SCM, SCM);
|
||||
SCM_DEFINE (scm_port_poll, "port-poll", 2, 1, 0,
|
||||
(SCM port, SCM events, SCM timeout),
|
||||
"")
|
||||
#define FUNC_NAME s_scm_port_poll
|
||||
{
|
||||
short c_events = 0;
|
||||
int c_timeout;
|
||||
|
||||
port = SCM_COERCE_OUTPORT (port);
|
||||
SCM_VALIDATE_PORT (1, port);
|
||||
SCM_VALIDATE_STRING (2, events);
|
||||
c_timeout = SCM_UNBNDP (timeout) ? -1 : SCM_NUM2INT (3, timeout);
|
||||
|
||||
if (scm_i_string_contains_char (events, 'r'))
|
||||
c_events |= POLLIN;
|
||||
if (scm_i_string_contains_char (events, '!'))
|
||||
c_events |= POLLPRI;
|
||||
if (scm_i_string_contains_char (events, 'w'))
|
||||
c_events |= POLLIN;
|
||||
|
||||
return scm_from_int (port_poll (port, c_events, c_timeout));
|
||||
}
|
||||
#undef FUNC_NAME
|
||||
|
||||
|
||||
|
||||
|
||||
/* Input. */
|
||||
|
@ -1330,8 +1469,15 @@ scm_i_read_bytes (SCM port, SCM dst, size_t start, size_t count)
|
|||
assert (count <= SCM_BYTEVECTOR_LENGTH (dst));
|
||||
assert (start + count <= SCM_BYTEVECTOR_LENGTH (dst));
|
||||
|
||||
retry:
|
||||
filled = ptob->c_read (port, dst, start, count);
|
||||
|
||||
if (filled == (size_t) -1)
|
||||
{
|
||||
port_poll (port, POLLIN, -1);
|
||||
goto retry;
|
||||
}
|
||||
|
||||
assert (filled <= count);
|
||||
|
||||
return filled;
|
||||
|
@ -2508,7 +2654,14 @@ scm_i_write_bytes (SCM port, SCM src, size_t start, size_t count)
|
|||
assert (start + count <= SCM_BYTEVECTOR_LENGTH (src));
|
||||
|
||||
do
|
||||
written += ptob->c_write (port, src, start + written, count - written);
|
||||
{
|
||||
size_t ret = ptob->c_write (port, src, start + written, count - written);
|
||||
|
||||
if (ret == (size_t) -1)
|
||||
port_poll (port, POLLOUT, -1);
|
||||
else
|
||||
written += ret;
|
||||
}
|
||||
while (written < count);
|
||||
|
||||
assert (written == count);
|
||||
|
|
|
@ -90,6 +90,10 @@ SCM_API scm_t_port_type *scm_make_port_type
|
|||
size_t (*write) (SCM port, SCM src, size_t start, size_t count));
|
||||
SCM_API void scm_set_port_scm_read (scm_t_port_type *ptob, SCM read);
|
||||
SCM_API void scm_set_port_scm_write (scm_t_port_type *ptob, SCM write);
|
||||
SCM_API void scm_set_port_read_wait_fd (scm_t_port_type *ptob,
|
||||
int (*wait_fd) (SCM port));
|
||||
SCM_API void scm_set_port_write_wait_fd (scm_t_port_type *ptob,
|
||||
int (*wait_fd) (SCM port));
|
||||
SCM_API void scm_set_port_print (scm_t_port_type *ptob,
|
||||
int (*print) (SCM exp,
|
||||
SCM port,
|
||||
|
|
|
@ -179,7 +179,10 @@ interpret its input and output."
|
|||
specialize-port-encoding!
|
||||
port-random-access?
|
||||
port-decode-char
|
||||
port-read-buffering))
|
||||
port-read-buffering
|
||||
port-poll
|
||||
port-read-wait-fd
|
||||
port-write-wait-fd))
|
||||
|
||||
(define-syntax-rule (port-buffer-bytevector buf) (vector-ref buf 0))
|
||||
(define-syntax-rule (port-buffer-cur buf) (vector-ref buf 1))
|
||||
|
@ -209,7 +212,10 @@ interpret its input and output."
|
|||
specialize-port-encoding!
|
||||
port-decode-char
|
||||
port-random-access?
|
||||
port-read-buffering)
|
||||
port-read-buffering
|
||||
port-poll
|
||||
port-read-wait-fd
|
||||
port-write-wait-fd)
|
||||
|
||||
;; And we're back.
|
||||
(define-module (ice-9 ports))
|
||||
|
|
|
@ -54,7 +54,9 @@
|
|||
#:replace (peek-char
|
||||
read-char)
|
||||
#:export (lookahead-u8
|
||||
get-u8))
|
||||
get-u8
|
||||
current-read-waiter
|
||||
current-write-waiter))
|
||||
|
||||
(define (write-bytes port src start count)
|
||||
(let ((written ((port-write port) port src start count)))
|
||||
|
@ -77,11 +79,25 @@
|
|||
(set-port-buffer-end! buf 0)
|
||||
(write-bytes port (port-buffer-bytevector buf) cur (- end cur)))))
|
||||
|
||||
(define (default-read-waiter port) (port-poll port "r"))
|
||||
(define (default-write-waiter port) (port-poll port "w"))
|
||||
|
||||
(define current-read-waiter (make-parameter default-read-waiter))
|
||||
(define current-write-waiter (make-parameter default-write-waiter))
|
||||
|
||||
(define (wait-for-readable port) ((current-read-waiter) port))
|
||||
(define (wait-for-writable port) ((current-write-waiter) port))
|
||||
|
||||
(define (read-bytes port dst start count)
|
||||
(let ((read ((port-read port) port dst start count)))
|
||||
(unless (<= 0 read count)
|
||||
(error "bad return from port read function" read))
|
||||
read))
|
||||
(cond
|
||||
(((port-read port) port dst start count)
|
||||
=> (lambda (read)
|
||||
(unless (<= 0 read count)
|
||||
(error "bad return from port read function" read))
|
||||
read))
|
||||
(else
|
||||
(wait-for-readable port)
|
||||
(read-bytes port dst start count))))
|
||||
|
||||
(define utf8-bom #vu8(#xEF #xBB #xBF))
|
||||
(define utf16be-bom #vu8(#xFE #xFF))
|
||||
|
|
|
@ -23,6 +23,7 @@
|
|||
#:use-module (test-suite guile-test)
|
||||
#:use-module (ice-9 popen)
|
||||
#:use-module (ice-9 rdelim)
|
||||
#:use-module (ice-9 threads)
|
||||
#:use-module (rnrs bytevectors)
|
||||
#:use-module ((ice-9 binary-ports) #:select (open-bytevector-input-port
|
||||
open-bytevector-output-port
|
||||
|
@ -601,20 +602,18 @@
|
|||
(pass-if "unread residue"
|
||||
(string=? (read-line) "moon"))))
|
||||
|
||||
;;; non-blocking mode on a port. create a pipe and set O_NONBLOCK on
|
||||
;;; the reading end. try to read a byte: should get EAGAIN or
|
||||
;;; EWOULDBLOCK error.
|
||||
(let* ((p (pipe))
|
||||
(r (car p)))
|
||||
(fcntl r F_SETFL (logior (fcntl r F_GETFL) O_NONBLOCK))
|
||||
(pass-if "non-blocking-I/O"
|
||||
(catch 'system-error
|
||||
(lambda () (read-char r) #f)
|
||||
(lambda (key . args)
|
||||
(and (eq? key 'system-error)
|
||||
(let ((errno (car (list-ref args 3))))
|
||||
(or (= errno EAGAIN)
|
||||
(= errno EWOULDBLOCK))))))))
|
||||
(when (provided? 'threads)
|
||||
(let* ((p (pipe))
|
||||
(r (car p))
|
||||
(w (cdr p)))
|
||||
(fcntl r F_SETFL (logior (fcntl r F_GETFL) O_NONBLOCK))
|
||||
(let ((thread (call-with-new-thread
|
||||
(lambda ()
|
||||
(usleep (* 250 1000))
|
||||
(write-char #\a w)
|
||||
(force-output w)))))
|
||||
(pass-if-equal "non-blocking-I/O" #\a (read-char r))
|
||||
(join-thread thread))))
|
||||
|
||||
|
||||
;;;; Pipe (popen) ports.
|
||||
|
|
Loading…
Add table
Add a link
Reference in a new issue