172 lines
3.8 KiB
Plaintext
172 lines
3.8 KiB
Plaintext
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.TH ERROR 9
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.SH NAME
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error, nexterror, poperror, waserror \- error handling functions
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.SH SYNOPSIS
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.ta \w'\fL#define 'u
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.B
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void error(char*)
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.PP
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.B
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void nexterror(void)
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.sp 0.1
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.PP
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.B
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#define poperror() (up->nerrlab--)
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.PP
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.B
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#define waserror() (setlabel(&up->errlab[up->nerrlab++]))
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.SH DESCRIPTION
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The kernel handles error conditions using non-local gotos,
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similar to
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.IR setjmp (2),
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but using a stack of error labels to implement nested exception handling.
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This simplifies many of the internal interfaces by eliminating the need
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for returning and checking error codes at every level of the call stack,
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at the cost of requiring kernel routines to adhere to a strict discipline.
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.PP
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Each process has in its defining kernel
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.B Proc
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structure a stack of labels,
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.B NERR
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(currently 64) elements deep.
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A kernel function that must perform a clean up or recovery action on an error
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makes a stylised call to
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.IR waserror ,
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.IR nexterror
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and
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.IR poperror :
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.IP
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.EX
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.DT
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if(waserror()){
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/* recovery action */
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nexterror();
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}
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/* normal action */
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poperror();
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.EE
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.PP
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When called in the normal course of events,
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.I waserror
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registers an error handling block by pushing its label onto the stack,
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and returns zero.
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The return value of
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.I waserror
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should be tested as shown above.
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If non-zero (true), the calling function should perform the needed
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error recovery, ended by a call to
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.I nexterror
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to transfer control to the next location on the error stack.
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Typical recovery actions include deallocating memory, unlocking resources, and
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resetting state variables.
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.PP
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Within the recovery block,
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after handling an error condition, there must normally
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be a call to
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.I nexterror
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to transfer control to any error recovery lower down in the stack.
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The main exception is in the outermost function in a process,
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which must not call
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.I nexterror
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(there being nothing further on the stack), but calls
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.I pexit
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(see
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.IR kproc (9))
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instead,
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to terminate the process.
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.PP
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When the need to recover a particular resource has passed,
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a function that has called
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.I waserror
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must
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remove the corresponding label from the stack by calling
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.IR poperror .
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This
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must
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be done before returning from the function; otherwise, a subsequent call to
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.I error
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will return to an obsolete activation record, with unpredictable but unpleasant consequences.
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.PP
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.I Error
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copies the given error message, which is limited to
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.B ERRMAX
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bytes, into the
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.B Proc.errstr
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of the current process,
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enables interrupts by calling
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.I spllo
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.RI ( native
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only),
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and finally calls
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.I nexterror
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to start invoking the recovery procedures currently stacked by
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.IR waserror .
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The file
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.B /sys/src/9/port/error.h
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offers a wide selection of predefined error messages, suitable for almost any occasion.
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The message set by the most recent call to
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.I error
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can be obtained within the kernel by examining
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.B up->error
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and in an application, by using the
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.L %r
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directive of
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.IR print (2).
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.PP
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A complex function can have nested error handlers.
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A
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.I waserror
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block will follow the acquisition of a resource, releasing it
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on error before calling
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.I nexterror,
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and a
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.I poperror
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will precede its release in the normal case.
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For example:
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.IP
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.EX
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.DT
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void
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outer(Thing *t)
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{
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qlock(t);
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if(waserror()){ /* A */
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qunlock(t);
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nexterror();
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}
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m = mallocz(READSTR, 0);
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if(m == nil)
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error(Enomem); /* returns to A */
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if(waserror()){ /* B */
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free(m);
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nexterror(); /* invokes A */
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}
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inner(t);
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poperror(); /* pops B */
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free(m);
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poperror(); /* pops A */
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qunlock(t);
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}
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.sp 1v
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void
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inner(Thing *t)
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{
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if(t->bad)
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error(Egreg); /* returns to B */
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t->valid++;
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}
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.EE
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.SH SOURCE
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.B /sys/src/9/port/proc.c
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.SH CAVEATS
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The description above has many instances of
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.IR should ,
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.IR will ,
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.I must
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and
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.IR "must not" .
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.SH SEE ALSO
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.IR panic (9),
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.IR kproc (9),
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.IR splhi (9)
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