--os:standalone works again
This commit is contained in:
parent
651103ff32
commit
52851b722d
16 changed files with 552 additions and 621 deletions
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@ -147,7 +147,7 @@ const
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scriptExt: ".sh", curDir: ".", exeExt: "", extSep: ".", props: {}),
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scriptExt: ".sh", curDir: ".", exeExt: "", extSep: ".", props: {}),
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(name: "Standalone", parDir: "..", dllFrmt: "lib$1.so", altDirSep: "/",
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(name: "Standalone", parDir: "..", dllFrmt: "lib$1.so", altDirSep: "/",
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objExt: ".o", newLine: "\x0A", pathSep: ":", dirSep: "/",
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objExt: ".o", newLine: "\x0A", pathSep: ":", dirSep: "/",
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scriptExt: ".sh", curDir: ".", exeExt: ".elf", extSep: ".",
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scriptExt: ".sh", curDir: ".", exeExt: "", extSep: ".",
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props: {})]
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props: {})]
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type
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type
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@ -493,9 +493,14 @@ OS features.
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To make the compiler output code for a 16bit target use the ``--cpu:avr``
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To make the compiler output code for a 16bit target use the ``--cpu:avr``
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target.
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target.
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So to generate code for an `AVR`:idx: processor use this command::
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For example, to generate code for an `AVR`:idx: processor use this command::
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nimrod c --cpu:avr --os:standalone --gc:none -d:useMalloc --genScript x.nim
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nimrod c --cpu:avr --os:standalone --deadCodeElim:on --genScript x.nim
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For the ``standalone`` target you need to provide
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a file ``panicoverride.nim``.
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See ``tests/manyloc/standalone/panicoverride.nim`` for an example
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implementation.
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Nimrod for realtime systems
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Nimrod for realtime systems
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110
lib/nimbase.h
110
lib/nimbase.h
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@ -27,9 +27,7 @@ __clang__
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# define _GNU_SOURCE 1
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# define _GNU_SOURCE 1
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#endif
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#endif
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#if !defined(__TINYC__)
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#if defined(__TINYC__)
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# include <math.h>
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#else
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/*# define __GNUC__ 3
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/*# define __GNUC__ 3
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# define GCC_MAJOR 4
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# define GCC_MAJOR 4
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# define __GNUC_MINOR__ 4
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# define __GNUC_MINOR__ 4
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@ -58,10 +56,6 @@ __clang__
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# define N_INLINE(rettype, name) rettype __inline name
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# define N_INLINE(rettype, name) rettype __inline name
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#endif
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#endif
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#if defined(__POCC__) || defined(_MSC_VER)
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# define HAVE_LRINT 1
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#endif
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#if defined(__POCC__)
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#if defined(__POCC__)
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# define NIM_CONST /* PCC is really picky with const modifiers */
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# define NIM_CONST /* PCC is really picky with const modifiers */
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# undef _MSC_VER /* Yeah, right PCC defines _MSC_VER even if it is
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# undef _MSC_VER /* Yeah, right PCC defines _MSC_VER even if it is
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@ -157,110 +151,8 @@ __clang__
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/* ----------------------------------------------------------------------- */
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/* ----------------------------------------------------------------------- */
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/* from float_cast.h: */
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/*
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** Copyright (C) 2001 Erik de Castro Lopo <erikd AT mega-nerd DOT com>
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**
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** Permission to use, copy, modify, distribute, and sell this file for any
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** purpose is hereby granted without fee, provided that the above copyright
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** and this permission notice appear in all copies. No representations are
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** made about the suitability of this software for any purpose. It is
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** provided "as is" without express or implied warranty.
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*/
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/* Version 1.1 */
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/*============================================================================
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** On Intel Pentium processors (especially PIII and probably P4), converting
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** from float to int is very slow. To meet the C specs, the code produced by
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** most C compilers targeting Pentium needs to change the FPU rounding mode
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** before the float to int conversion is performed.
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**
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** Changing the FPU rounding mode causes the FPU pipeline to be flushed. It
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** is this flushing of the pipeline which is so slow.
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**
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** Fortunately the ISO C99 specifications define the functions lrint, lrintf,
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** llrint and llrintf which fix this problem as a side effect.
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*/
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/*
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** The C99 prototypes for lrint and lrintf are as follows:
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**
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** long int lrintf (float x);
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** long int lrint (double x);
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*/
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#if defined(__LCC__) || (defined(__GNUC__))
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/* Linux' GCC does not seem to have these. Why? */
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# define HAVE_LRINT
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# define HAVE_LRINTF
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#endif
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#if defined(HAVE_LRINT) && defined(HAVE_LRINTF)
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/* These defines enable functionality introduced with the 1999 ISO C
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** standard. They must be defined before the inclusion of math.h to
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** engage them. If optimisation is enabled, these functions will be
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** inlined. With optimisation switched off, you have to link in the
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** maths library using -lm.
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*/
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# define _ISOC9X_SOURCE 1
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# define _ISOC99_SOURCE 1
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# define __USE_ISOC9X 1
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# define __USE_ISOC99 1
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#elif (defined(WIN32) || defined(_WIN32) || defined(__WIN32__)) \
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&& !defined(__BORLANDC__) && !defined(__POCC__) && !defined(_M_X64)
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/* Win32 doesn't seem to have these functions.
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** Therefore implement inline versions of these functions here.
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*/
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static N_INLINE(long int, lrint)(double flt) {
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long int intgr;
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_asm {
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fld flt
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fistp intgr
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};
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return intgr;
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}
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static N_INLINE(long int, lrintf)(float flt) {
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long int intgr;
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_asm {
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fld flt
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fistp intgr
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};
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return intgr;
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}
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#else
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# ifndef lrint
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# define lrint(dbl) ((long int)(dbl))
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# endif
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# ifndef lrintf
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# define lrintf(flt) ((long int)(flt))
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# endif
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#endif /* defined(HAVE_LRINT) && defined(HAVE_LRINTF) */
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#include <stdlib.h>
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#include <stdio.h>
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#include <string.h>
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#include <limits.h>
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#include <limits.h>
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#include <stddef.h>
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#include <stddef.h>
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#include <signal.h>
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#include <setjmp.h>
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/*
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#ifndef INF
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static unsigned long nimInf[2]={0xffffffff, 0x7fffffff};
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# define INF (*(double*) nimInf)
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#endif */
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/* C99 compiler? */
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/* C99 compiler? */
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#if (defined(__STD_VERSION__) && (__STD_VERSION__ >= 199901))
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#if (defined(__STD_VERSION__) && (__STD_VERSION__ >= 199901))
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@ -165,7 +165,7 @@ when not defined(JS):
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## float value) equals m * 2**n. frexp stores n in `exponent` and returns
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## float value) equals m * 2**n. frexp stores n in `exponent` and returns
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## m.
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## m.
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proc round*(x: float): int {.importc: "lrint", nodecl.}
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proc round*(x: float): int {.importc: "lrint", header: "<math.h>".}
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## converts a float to an int by rounding.
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## converts a float to an int by rounding.
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proc arccos*(x: float): float {.importc: "acos", header: "<math.h>".}
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proc arccos*(x: float): float {.importc: "acos", header: "<math.h>".}
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@ -191,12 +191,12 @@ when not defined(JS):
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# C procs:
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# C procs:
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proc gettime(dummy: ptr cint): cint {.importc: "time", header: "<time.h>".}
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proc gettime(dummy: ptr cint): cint {.importc: "time", header: "<time.h>".}
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proc srand(seed: cint) {.importc: "srand", nodecl.}
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proc srand(seed: cint) {.importc: "srand", header: "<stdlib.h>".}
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proc rand(): cint {.importc: "rand", nodecl.}
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proc rand(): cint {.importc: "rand", header: "<stdlib.h>".}
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when not defined(windows):
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when not defined(windows):
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proc srand48(seed: clong) {.importc: "srand48", nodecl.}
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proc srand48(seed: clong) {.importc: "srand48", header: "<stdlib.h>".}
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proc drand48(): float {.importc: "drand48", nodecl.}
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proc drand48(): float {.importc: "drand48", header: "<stdlib.h>".}
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proc random(max: float): float =
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proc random(max: float): float =
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result = drand48() * max
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result = drand48() * max
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@ -209,9 +209,9 @@ when not defined(JS):
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proc random(max: int): int =
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proc random(max: int): int =
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result = int(rand()) mod max
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result = int(rand()) mod max
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proc trunc*(x: float): float {.importc: "trunc", nodecl.}
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proc trunc*(x: float): float {.importc: "trunc", header: "<math.h>".}
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proc floor*(x: float): float {.importc: "floor", nodecl.}
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proc floor*(x: float): float {.importc: "floor", header: "<math.h>".}
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proc ceil*(x: float): float {.importc: "ceil", nodecl.}
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proc ceil*(x: float): float {.importc: "ceil", header: "<math.h>".}
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proc fmod*(x, y: float): float {.importc: "fmod", header: "<math.h>".}
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proc fmod*(x, y: float): float {.importc: "fmod", header: "<math.h>".}
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142
lib/system.nim
142
lib/system.nim
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@ -450,7 +450,7 @@ proc ze64*(x: int16): int64 {.magic: "Ze16ToI64", noSideEffect.}
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proc ze64*(x: int32): int64 {.magic: "Ze32ToI64", noSideEffect.}
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proc ze64*(x: int32): int64 {.magic: "Ze32ToI64", noSideEffect.}
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## zero extends a smaller integer type to ``int64``. This treats `x` as
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## zero extends a smaller integer type to ``int64``. This treats `x` as
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## unsigned.
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## unsigned.
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proc ze64*(x: int): int64 {.magic: "ZeIToI64", noDecl, noSideEffect.}
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proc ze64*(x: int): int64 {.magic: "ZeIToI64", noSideEffect.}
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## zero extends a smaller integer type to ``int64``. This treats `x` as
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## zero extends a smaller integer type to ``int64``. This treats `x` as
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## unsigned. Does nothing if the size of an ``int`` is the same as ``int64``.
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## unsigned. Does nothing if the size of an ``int`` is the same as ``int64``.
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## (This is the case on 64 bit processors.)
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## (This is the case on 64 bit processors.)
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@ -909,7 +909,7 @@ var programResult* {.exportc: "nim_program_result".}: int
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## prematurelly using ``quit``, this value is ignored.
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## prematurelly using ``quit``, this value is ignored.
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proc quit*(errorcode: int = QuitSuccess) {.
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proc quit*(errorcode: int = QuitSuccess) {.
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magic: "Exit", importc: "exit", noDecl, noReturn.}
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magic: "Exit", importc: "exit", header: "<stdlib.h>", noReturn.}
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## Stops the program immediately with an exit code.
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## Stops the program immediately with an exit code.
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##
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##
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## Before stopping the program the "quit procedures" are called in the
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## Before stopping the program the "quit procedures" are called in the
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@ -1064,7 +1064,8 @@ proc toBiggestInt*(f: biggestfloat): biggestint {.
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## rounds `f` if it does not contain an integer value. If the conversion
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## rounds `f` if it does not contain an integer value. If the conversion
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## fails (because `f` is infinite for example), `EInvalidValue` is raised.
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## fails (because `f` is infinite for example), `EInvalidValue` is raised.
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proc addQuitProc*(QuitProc: proc() {.noconv.}) {.importc: "atexit", nodecl.}
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proc addQuitProc*(QuitProc: proc() {.noconv.}) {.
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importc: "atexit", header: "<stdlib.h>".}
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## adds/registers a quit procedure. Each call to ``addQuitProc``
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## adds/registers a quit procedure. Each call to ``addQuitProc``
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## registers another quit procedure. Up to 30 procedures can be
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## registers another quit procedure. Up to 30 procedures can be
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## registered. They are executed on a last-in, first-out basis
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## registered. They are executed on a last-in, first-out basis
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@ -1104,13 +1105,15 @@ when not defined(nimrodVM):
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## Exactly ``size`` bytes will be overwritten. Like any procedure
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## Exactly ``size`` bytes will be overwritten. Like any procedure
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## dealing with raw memory this is *unsafe*.
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## dealing with raw memory this is *unsafe*.
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proc copyMem*(dest, source: Pointer, size: int) {.importc: "memcpy", noDecl.}
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proc copyMem*(dest, source: Pointer, size: int) {.
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importc: "memcpy", header: "<string.h>".}
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## copies the contents from the memory at ``source`` to the memory
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## copies the contents from the memory at ``source`` to the memory
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## at ``dest``. Exactly ``size`` bytes will be copied. The memory
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## at ``dest``. Exactly ``size`` bytes will be copied. The memory
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## regions may not overlap. Like any procedure dealing with raw
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## regions may not overlap. Like any procedure dealing with raw
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## memory this is *unsafe*.
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## memory this is *unsafe*.
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proc moveMem*(dest, source: Pointer, size: int) {.importc: "memmove", noDecl.}
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proc moveMem*(dest, source: Pointer, size: int) {.
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importc: "memmove", header: "<string.h>".}
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## copies the contents from the memory at ``source`` to the memory
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## copies the contents from the memory at ``source`` to the memory
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## at ``dest``. Exactly ``size`` bytes will be copied. The memory
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## at ``dest``. Exactly ``size`` bytes will be copied. The memory
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## regions may overlap, ``moveMem`` handles this case appropriately
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## regions may overlap, ``moveMem`` handles this case appropriately
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@ -1124,6 +1127,7 @@ when not defined(nimrodVM):
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## otherwise. Like any procedure dealing with raw memory this is
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## otherwise. Like any procedure dealing with raw memory this is
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## *unsafe*.
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## *unsafe*.
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when hostOs != "standalone":
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proc alloc*(size: int): pointer {.noconv, rtl, tags: [].}
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proc alloc*(size: int): pointer {.noconv, rtl, tags: [].}
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## allocates a new memory block with at least ``size`` bytes. The
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## allocates a new memory block with at least ``size`` bytes. The
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## block has to be freed with ``realloc(block, 0)`` or
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## block has to be freed with ``realloc(block, 0)`` or
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@ -1201,7 +1205,7 @@ proc `$` *(x: int64): string {.magic: "Int64ToStr", noSideEffect.}
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## converted to a decimal string.
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## converted to a decimal string.
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when not defined(NimrodVM):
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when not defined(NimrodVM):
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when not defined(JS):
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when not defined(JS) and hostOS != "standalone":
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proc `$` *(x: uint64): string {.noSideEffect.}
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proc `$` *(x: uint64): string {.noSideEffect.}
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## The stingify operator for an unsigned integer argument. Returns `x`
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## The stingify operator for an unsigned integer argument. Returns `x`
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## converted to a decimal string.
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## converted to a decimal string.
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@ -1254,7 +1258,7 @@ const
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# GC interface:
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# GC interface:
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when not defined(nimrodVM):
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when not defined(nimrodVM) and hostOS != "standalone":
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proc getOccupiedMem*(): int {.rtl.}
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proc getOccupiedMem*(): int {.rtl.}
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## returns the number of bytes that are owned by the process and hold data.
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## returns the number of bytes that are owned by the process and hold data.
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@ -1632,7 +1636,7 @@ when false:
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# ----------------- GC interface ---------------------------------------------
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# ----------------- GC interface ---------------------------------------------
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when not defined(nimrodVM):
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when not defined(nimrodVM) and hostOS != "standalone":
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proc GC_disable*() {.rtl, inl.}
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proc GC_disable*() {.rtl, inl.}
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## disables the GC. If called n-times, n calls to `GC_enable` are needed to
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## disables the GC. If called n-times, n calls to `GC_enable` are needed to
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## reactivate the GC. Note that in most circumstances one should only disable
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## reactivate the GC. Note that in most circumstances one should only disable
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@ -1668,16 +1672,16 @@ when not defined(nimrodVM):
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## returns an informative string about the GC's activity. This may be useful
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## returns an informative string about the GC's activity. This may be useful
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## for tweaking.
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## for tweaking.
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proc GC_ref*[T](x: ref T) {.magic: "GCref".}
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proc GC_ref*[T](x: ref T) {.magic: "GCref".}
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proc GC_ref*[T](x: seq[T]) {.magic: "GCref".}
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proc GC_ref*[T](x: seq[T]) {.magic: "GCref".}
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proc GC_ref*(x: string) {.magic: "GCref".}
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proc GC_ref*(x: string) {.magic: "GCref".}
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## marks the object `x` as referenced, so that it will not be freed until
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## marks the object `x` as referenced, so that it will not be freed until
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## it is unmarked via `GC_unref`. If called n-times for the same object `x`,
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## it is unmarked via `GC_unref`. If called n-times for the same object `x`,
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## n calls to `GC_unref` are needed to unmark `x`.
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## n calls to `GC_unref` are needed to unmark `x`.
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proc GC_unref*[T](x: ref T) {.magic: "GCunref".}
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proc GC_unref*[T](x: ref T) {.magic: "GCunref".}
|
||||||
proc GC_unref*[T](x: seq[T]) {.magic: "GCunref".}
|
proc GC_unref*[T](x: seq[T]) {.magic: "GCunref".}
|
||||||
proc GC_unref*(x: string) {.magic: "GCunref".}
|
proc GC_unref*(x: string) {.magic: "GCunref".}
|
||||||
## see the documentation of `GC_ref`.
|
## see the documentation of `GC_ref`.
|
||||||
|
|
||||||
template accumulateResult*(iter: expr) =
|
template accumulateResult*(iter: expr) =
|
||||||
|
|
@ -1741,15 +1745,7 @@ type
|
||||||
filename*: cstring ## filename of the proc that is currently executing
|
filename*: cstring ## filename of the proc that is currently executing
|
||||||
len*: int ## length of the inspectable slots
|
len*: int ## length of the inspectable slots
|
||||||
|
|
||||||
when not defined(JS):
|
when defined(JS):
|
||||||
{.push stack_trace:off, profiler:off.}
|
|
||||||
proc add*(x: var string, y: cstring) {.noStackFrame.} =
|
|
||||||
var i = 0
|
|
||||||
while y[i] != '\0':
|
|
||||||
add(x, y[i])
|
|
||||||
inc(i)
|
|
||||||
{.pop.}
|
|
||||||
else:
|
|
||||||
proc add*(x: var string, y: cstring) {.noStackFrame.} =
|
proc add*(x: var string, y: cstring) {.noStackFrame.} =
|
||||||
asm """
|
asm """
|
||||||
var len = `x`[0].length-1;
|
var len = `x`[0].length-1;
|
||||||
|
|
@ -1759,9 +1755,17 @@ else:
|
||||||
}
|
}
|
||||||
`x`[0][len] = 0
|
`x`[0][len] = 0
|
||||||
"""
|
"""
|
||||||
|
|
||||||
proc add*(x: var cstring, y: cstring) {.magic: "AppendStrStr".}
|
proc add*(x: var cstring, y: cstring) {.magic: "AppendStrStr".}
|
||||||
|
|
||||||
|
elif hostOS != "standalone":
|
||||||
|
{.push stack_trace:off, profiler:off.}
|
||||||
|
proc add*(x: var string, y: cstring) {.noStackFrame.} =
|
||||||
|
var i = 0
|
||||||
|
while y[i] != '\0':
|
||||||
|
add(x, y[i])
|
||||||
|
inc(i)
|
||||||
|
{.pop.}
|
||||||
|
|
||||||
proc echo*[T](x: varargs[T, `$`]) {.magic: "Echo", tags: [FWriteIO].}
|
proc echo*[T](x: varargs[T, `$`]) {.magic: "Echo", tags: [FWriteIO].}
|
||||||
## special built-in that takes a variable number of arguments. Each argument
|
## special built-in that takes a variable number of arguments. Each argument
|
||||||
## is converted to a string via ``$``, so it works for user-defined
|
## is converted to a string via ``$``, so it works for user-defined
|
||||||
|
|
@ -1786,6 +1790,29 @@ template newException*(exceptn: typeDesc, message: string): expr =
|
||||||
e.msg = message
|
e.msg = message
|
||||||
e
|
e
|
||||||
|
|
||||||
|
when hostOS == "standalone":
|
||||||
|
include panicoverride
|
||||||
|
|
||||||
|
when not defined(sysFatal):
|
||||||
|
template sysFatal(exceptn: typeDesc, message: string) =
|
||||||
|
when hostOS == "standalone":
|
||||||
|
panic(message)
|
||||||
|
else:
|
||||||
|
var e: ref exceptn
|
||||||
|
new(e)
|
||||||
|
e.msg = message
|
||||||
|
raise e
|
||||||
|
|
||||||
|
template sysFatal(exceptn: typeDesc, message, arg: string) =
|
||||||
|
when hostOS == "standalone":
|
||||||
|
rawoutput(message)
|
||||||
|
panic(arg)
|
||||||
|
else:
|
||||||
|
var e: ref exceptn
|
||||||
|
new(e)
|
||||||
|
e.msg = message & arg
|
||||||
|
raise e
|
||||||
|
|
||||||
proc getTypeInfo*[T](x: T): pointer {.magic: "GetTypeInfo".}
|
proc getTypeInfo*[T](x: T): pointer {.magic: "GetTypeInfo".}
|
||||||
## get type information for `x`. Ordinary code should not use this, but
|
## get type information for `x`. Ordinary code should not use this, but
|
||||||
## the `typeinfo` module instead.
|
## the `typeinfo` module instead.
|
||||||
|
|
@ -1793,7 +1820,7 @@ proc getTypeInfo*[T](x: T): pointer {.magic: "GetTypeInfo".}
|
||||||
when not defined(JS): #and not defined(NimrodVM):
|
when not defined(JS): #and not defined(NimrodVM):
|
||||||
{.push stack_trace: off, profiler:off.}
|
{.push stack_trace: off, profiler:off.}
|
||||||
|
|
||||||
when not defined(NimrodVM):
|
when not defined(NimrodVM) and hostOS != "standalone":
|
||||||
proc initGC()
|
proc initGC()
|
||||||
when not defined(boehmgc) and not defined(useMalloc):
|
when not defined(boehmgc) and not defined(useMalloc):
|
||||||
proc initAllocator() {.inline.}
|
proc initAllocator() {.inline.}
|
||||||
|
|
@ -1839,8 +1866,10 @@ when not defined(JS): #and not defined(NimrodVM):
|
||||||
proc endbStep()
|
proc endbStep()
|
||||||
|
|
||||||
# ----------------- IO Part ------------------------------------------------
|
# ----------------- IO Part ------------------------------------------------
|
||||||
|
when hostOS != "standalone":
|
||||||
type
|
type
|
||||||
CFile {.importc: "FILE", nodecl, final, incompletestruct.} = object
|
CFile {.importc: "FILE", header: "<stdio.h>",
|
||||||
|
final, incompletestruct.} = object
|
||||||
TFile* = ptr CFile ## The type representing a file handle.
|
TFile* = ptr CFile ## The type representing a file handle.
|
||||||
|
|
||||||
TFileMode* = enum ## The file mode when opening a file.
|
TFileMode* = enum ## The file mode when opening a file.
|
||||||
|
|
@ -1894,7 +1923,7 @@ when not defined(JS): #and not defined(NimrodVM):
|
||||||
## Default mode is readonly. Raises an ``IO`` exception if the file
|
## Default mode is readonly. Raises an ``IO`` exception if the file
|
||||||
## could not be opened.
|
## could not be opened.
|
||||||
if not open(result, filename, mode, bufSize):
|
if not open(result, filename, mode, bufSize):
|
||||||
raise newException(EIO, "cannot open: " & filename)
|
sysFatal(EIO, "cannot open: ", filename)
|
||||||
|
|
||||||
proc reopen*(f: TFile, filename: string, mode: TFileMode = fmRead): bool {.
|
proc reopen*(f: TFile, filename: string, mode: TFileMode = fmRead): bool {.
|
||||||
tags: [].}
|
tags: [].}
|
||||||
|
|
@ -1904,15 +1933,17 @@ when not defined(JS): #and not defined(NimrodVM):
|
||||||
##
|
##
|
||||||
## Default mode is readonly. Returns true iff the file could be reopened.
|
## Default mode is readonly. Returns true iff the file could be reopened.
|
||||||
|
|
||||||
proc Close*(f: TFile) {.importc: "fclose", nodecl, tags: [].}
|
proc Close*(f: TFile) {.importc: "fclose", header: "<stdio.h>", tags: [].}
|
||||||
## Closes the file.
|
## Closes the file.
|
||||||
|
|
||||||
proc EndOfFile*(f: TFile): Bool {.tags: [].}
|
proc EndOfFile*(f: TFile): Bool {.tags: [].}
|
||||||
## Returns true iff `f` is at the end.
|
## Returns true iff `f` is at the end.
|
||||||
|
|
||||||
proc readChar*(f: TFile): char {.importc: "fgetc", nodecl, tags: [FReadIO].}
|
proc readChar*(f: TFile): char {.
|
||||||
|
importc: "fgetc", header: "<stdio.h>", tags: [FReadIO].}
|
||||||
## Reads a single character from the stream `f`.
|
## Reads a single character from the stream `f`.
|
||||||
proc FlushFile*(f: TFile) {.importc: "fflush", noDecl, tags: [FWriteIO].}
|
proc FlushFile*(f: TFile) {.
|
||||||
|
importc: "fflush", header: "<stdio.h>", tags: [FWriteIO].}
|
||||||
## Flushes `f`'s buffer.
|
## Flushes `f`'s buffer.
|
||||||
|
|
||||||
proc readAll*(file: TFile): TaintedString {.tags: [FReadIO].}
|
proc readAll*(file: TFile): TaintedString {.tags: [FReadIO].}
|
||||||
|
|
@ -2023,16 +2054,15 @@ when not defined(JS): #and not defined(NimrodVM):
|
||||||
|
|
||||||
# -------------------------------------------------------------------------
|
# -------------------------------------------------------------------------
|
||||||
|
|
||||||
when not defined(NimrodVM):
|
when not defined(NimrodVM) and hostOS != "standalone":
|
||||||
proc allocCStringArray*(a: openArray[string]): cstringArray =
|
proc allocCStringArray*(a: openArray[string]): cstringArray =
|
||||||
## creates a NULL terminated cstringArray from `a`. The result has to
|
## creates a NULL terminated cstringArray from `a`. The result has to
|
||||||
## be freed with `deallocCStringArray` after it's not needed anymore.
|
## be freed with `deallocCStringArray` after it's not needed anymore.
|
||||||
result = cast[cstringArray](alloc0((a.len+1) * sizeof(cstring)))
|
result = cast[cstringArray](alloc0((a.len+1) * sizeof(cstring)))
|
||||||
|
let x = cast[ptr array[0..20_000, string]](a)
|
||||||
for i in 0 .. a.high:
|
for i in 0 .. a.high:
|
||||||
# XXX get rid of this string copy here:
|
result[i] = cast[cstring](alloc0(x[i].len+1))
|
||||||
var x = a[i]
|
copyMem(result[i], addr(x[i][0]), x[i].len)
|
||||||
result[i] = cast[cstring](alloc0(x.len+1))
|
|
||||||
copyMem(result[i], addr(x[0]), x.len)
|
|
||||||
|
|
||||||
proc deallocCStringArray*(a: cstringArray) =
|
proc deallocCStringArray*(a: cstringArray) =
|
||||||
## frees a NULL terminated cstringArray.
|
## frees a NULL terminated cstringArray.
|
||||||
|
|
@ -2042,6 +2072,7 @@ when not defined(JS): #and not defined(NimrodVM):
|
||||||
inc(i)
|
inc(i)
|
||||||
dealloc(a)
|
dealloc(a)
|
||||||
|
|
||||||
|
when not defined(NimrodVM):
|
||||||
proc atomicInc*(memLoc: var int, x: int = 1): int {.inline, discardable.}
|
proc atomicInc*(memLoc: var int, x: int = 1): int {.inline, discardable.}
|
||||||
## atomic increment of `memLoc`. Returns the value after the operation.
|
## atomic increment of `memLoc`. Returns the value after the operation.
|
||||||
|
|
||||||
|
|
@ -2064,7 +2095,7 @@ when not defined(JS): #and not defined(NimrodVM):
|
||||||
when hasThreadSupport:
|
when hasThreadSupport:
|
||||||
include "system/syslocks"
|
include "system/syslocks"
|
||||||
include "system/threads"
|
include "system/threads"
|
||||||
elif not defined(nogc) and not defined(NimrodVM):
|
elif not defined(nogc) and not defined(NimrodVM) and hostOS != "standalone":
|
||||||
when not defined(useNimRtl) and not defined(createNimRtl): initStackBottom()
|
when not defined(useNimRtl) and not defined(createNimRtl): initStackBottom()
|
||||||
initGC()
|
initGC()
|
||||||
|
|
||||||
|
|
@ -2089,6 +2120,7 @@ when not defined(JS): #and not defined(NimrodVM):
|
||||||
include "system/embedded"
|
include "system/embedded"
|
||||||
else:
|
else:
|
||||||
include "system/excpt"
|
include "system/excpt"
|
||||||
|
include "system/chcks"
|
||||||
|
|
||||||
# we cannot compile this with stack tracing on
|
# we cannot compile this with stack tracing on
|
||||||
# as it would recurse endlessly!
|
# as it would recurse endlessly!
|
||||||
|
|
@ -2124,17 +2156,18 @@ when not defined(JS): #and not defined(NimrodVM):
|
||||||
else:
|
else:
|
||||||
result = n.sons[n.len]
|
result = n.sons[n.len]
|
||||||
|
|
||||||
include "system/mmdisp"
|
when hostOS != "standalone": include "system/mmdisp"
|
||||||
{.push stack_trace: off, profiler:off.}
|
{.push stack_trace: off, profiler:off.}
|
||||||
when hostOS != "standalone": include "system/sysstr"
|
when hostOS != "standalone": include "system/sysstr"
|
||||||
{.pop.}
|
{.pop.}
|
||||||
|
|
||||||
include "system/sysio"
|
when hostOS != "standalone": include "system/sysio"
|
||||||
when hasThreadSupport:
|
when hasThreadSupport:
|
||||||
include "system/channels"
|
when hostOS != "standalone": include "system/channels"
|
||||||
else:
|
else:
|
||||||
include "system/sysio"
|
include "system/sysio"
|
||||||
|
|
||||||
|
when hostOS != "standalone":
|
||||||
iterator lines*(filename: string): TaintedString {.tags: [FReadIO].} =
|
iterator lines*(filename: string): TaintedString {.tags: [FReadIO].} =
|
||||||
## Iterate over any line in the file named `filename`.
|
## Iterate over any line in the file named `filename`.
|
||||||
## If the file does not exist `EIO` is raised.
|
## If the file does not exist `EIO` is raised.
|
||||||
|
|
@ -2146,7 +2179,7 @@ when not defined(JS): #and not defined(NimrodVM):
|
||||||
iterator lines*(f: TFile): TaintedString {.tags: [FReadIO].} =
|
iterator lines*(f: TFile): TaintedString {.tags: [FReadIO].} =
|
||||||
## Iterate over any line in the file `f`.
|
## Iterate over any line in the file `f`.
|
||||||
var res = TaintedString(newStringOfCap(80))
|
var res = TaintedString(newStringOfCap(80))
|
||||||
while f.readLine(res): yield TaintedString(res)
|
while f.readLine(res): yield res
|
||||||
|
|
||||||
when hostOS != "standalone" and not defined(NimrodVM):
|
when hostOS != "standalone" and not defined(NimrodVM):
|
||||||
include "system/assign"
|
include "system/assign"
|
||||||
|
|
@ -2263,10 +2296,6 @@ proc `/`*(x, y: int): float {.inline, noSideEffect.} =
|
||||||
template `-|`*(b, s: expr): expr =
|
template `-|`*(b, s: expr): expr =
|
||||||
(if b >= 0: b else: s.len + b)
|
(if b >= 0: b else: s.len + b)
|
||||||
|
|
||||||
proc `[]`*(s: string, x: TSlice[int]): string {.inline.} =
|
|
||||||
## slice operation for strings. Negative indexes are supported.
|
|
||||||
result = s.substr(x.a-|s, x.b-|s)
|
|
||||||
|
|
||||||
template spliceImpl(s, a, L, b: expr): stmt {.immediate.} =
|
template spliceImpl(s, a, L, b: expr): stmt {.immediate.} =
|
||||||
# make room for additional elements or cut:
|
# make room for additional elements or cut:
|
||||||
var slen = s.len
|
var slen = s.len
|
||||||
|
|
@ -2283,7 +2312,12 @@ template spliceImpl(s, a, L, b: expr): stmt {.immediate.} =
|
||||||
# fill the hole:
|
# fill the hole:
|
||||||
for i in 0 .. <b.len: s[i+a] = b[i]
|
for i in 0 .. <b.len: s[i+a] = b[i]
|
||||||
|
|
||||||
proc `[]=`*(s: var string, x: TSlice[int], b: string) =
|
when hostOS != "standalone":
|
||||||
|
proc `[]`*(s: string, x: TSlice[int]): string {.inline.} =
|
||||||
|
## slice operation for strings. Negative indexes are supported.
|
||||||
|
result = s.substr(x.a-|s, x.b-|s)
|
||||||
|
|
||||||
|
proc `[]=`*(s: var string, x: TSlice[int], b: string) =
|
||||||
## slice assignment for strings. Negative indexes are supported. If
|
## slice assignment for strings. Negative indexes are supported. If
|
||||||
## ``b.len`` is not exactly the number of elements that are referred to
|
## ``b.len`` is not exactly the number of elements that are referred to
|
||||||
## by `x`, a `splice`:idx: is performed:
|
## by `x`, a `splice`:idx: is performed:
|
||||||
|
|
@ -2313,7 +2347,7 @@ proc `[]=`*[Idx, T](a: var array[Idx, T], x: TSlice[int], b: openArray[T]) =
|
||||||
if L == b.len:
|
if L == b.len:
|
||||||
for i in 0 .. <L: a[i+x.a] = b[i]
|
for i in 0 .. <L: a[i+x.a] = b[i]
|
||||||
else:
|
else:
|
||||||
raise newException(EOutOfRange, "differing lengths for slice assignment")
|
sysFatal(EOutOfRange, "differing lengths for slice assignment")
|
||||||
|
|
||||||
proc `[]`*[Idx, T](a: array[Idx, T], x: TSlice[Idx]): seq[T] =
|
proc `[]`*[Idx, T](a: array[Idx, T], x: TSlice[Idx]): seq[T] =
|
||||||
## slice operation for arrays. Negative indexes are **not** supported
|
## slice operation for arrays. Negative indexes are **not** supported
|
||||||
|
|
@ -2335,7 +2369,7 @@ proc `[]=`*[Idx, T](a: var array[Idx, T], x: TSlice[Idx], b: openArray[T]) =
|
||||||
a[j] = b[i]
|
a[j] = b[i]
|
||||||
inc(j)
|
inc(j)
|
||||||
else:
|
else:
|
||||||
raise newException(EOutOfRange, "differing lengths for slice assignment")
|
sysFatal(EOutOfRange, "differing lengths for slice assignment")
|
||||||
|
|
||||||
proc `[]`*[T](s: seq[T], x: TSlice[int]): seq[T] =
|
proc `[]`*[T](s: seq[T], x: TSlice[int]): seq[T] =
|
||||||
## slice operation for sequences. Negative indexes are supported.
|
## slice operation for sequences. Negative indexes are supported.
|
||||||
|
|
@ -2448,7 +2482,7 @@ template CurrentSourcePath*: string = InstantiationInfo(-1, true).filename
|
||||||
## returns the full file-system path of the current source
|
## returns the full file-system path of the current source
|
||||||
|
|
||||||
proc raiseAssert*(msg: string) {.noinline.} =
|
proc raiseAssert*(msg: string) {.noinline.} =
|
||||||
raise newException(EAssertionFailed, msg)
|
sysFatal(EAssertionFailed, msg)
|
||||||
|
|
||||||
when true:
|
when true:
|
||||||
proc hiddenRaiseAssert(msg: string) {.raises: [], tags: [].} =
|
proc hiddenRaiseAssert(msg: string) {.raises: [], tags: [].} =
|
||||||
|
|
@ -2532,7 +2566,8 @@ template eval*(blk: stmt): stmt =
|
||||||
macro payload: stmt {.gensym.} = blk
|
macro payload: stmt {.gensym.} = blk
|
||||||
payload()
|
payload()
|
||||||
|
|
||||||
proc insert*(x: var string, item: string, i = 0) {.noSideEffect.} =
|
when hostOS != "standalone":
|
||||||
|
proc insert*(x: var string, item: string, i = 0) {.noSideEffect.} =
|
||||||
## inserts `item` into `x` at position `i`.
|
## inserts `item` into `x` at position `i`.
|
||||||
var xl = x.len
|
var xl = x.len
|
||||||
setLen(x, xl+item.len)
|
setLen(x, xl+item.len)
|
||||||
|
|
@ -2558,16 +2593,17 @@ proc compiles*(x: expr): bool {.magic: "Compiles", noSideEffect.} =
|
||||||
when defined(initDebugger):
|
when defined(initDebugger):
|
||||||
initDebugger()
|
initDebugger()
|
||||||
|
|
||||||
# XXX: make these the default (or implement the NilObject optimization)
|
when hostOS != "standalone":
|
||||||
proc safeAdd*[T](x: var seq[T], y: T) {.noSideEffect.} =
|
# XXX: make these the default (or implement the NilObject optimization)
|
||||||
|
proc safeAdd*[T](x: var seq[T], y: T) {.noSideEffect.} =
|
||||||
if x == nil: x = @[y]
|
if x == nil: x = @[y]
|
||||||
else: x.add(y)
|
else: x.add(y)
|
||||||
|
|
||||||
proc safeAdd*(x: var string, y: char) =
|
proc safeAdd*(x: var string, y: char) =
|
||||||
if x == nil: x = ""
|
if x == nil: x = ""
|
||||||
x.add(y)
|
x.add(y)
|
||||||
|
|
||||||
proc safeAdd*(x: var string, y: string) =
|
proc safeAdd*(x: var string, y: string) =
|
||||||
if x == nil: x = y
|
if x == nil: x = y
|
||||||
else: x.add(y)
|
else: x.add(y)
|
||||||
|
|
||||||
|
|
|
||||||
|
|
@ -13,25 +13,30 @@
|
||||||
|
|
||||||
{.push hints:off}
|
{.push hints:off}
|
||||||
|
|
||||||
proc c_strcmp(a, b: CString): cint {.nodecl, noSideEffect, importc: "strcmp".}
|
proc c_strcmp(a, b: CString): cint {.header: "<string.h>",
|
||||||
proc c_memcmp(a, b: CString, size: int): cint {.
|
noSideEffect, importc: "strcmp".}
|
||||||
nodecl, noSideEffect, importc: "memcmp".}
|
proc c_memcmp(a, b: CString, size: int): cint {.header: "<string.h>",
|
||||||
proc c_memcpy(a, b: CString, size: int) {.nodecl, importc: "memcpy".}
|
noSideEffect, importc: "memcmp".}
|
||||||
proc c_strlen(a: CString): int {.nodecl, noSideEffect, importc: "strlen".}
|
proc c_memcpy(a, b: CString, size: int) {.header: "<string.h>", importc: "memcpy".}
|
||||||
proc c_memset(p: pointer, value: cint, size: int) {.nodecl, importc: "memset".}
|
proc c_strlen(a: CString): int {.header: "<string.h>",
|
||||||
|
noSideEffect, importc: "strlen".}
|
||||||
|
proc c_memset(p: pointer, value: cint, size: int) {.
|
||||||
|
header: "<string.h>", importc: "memset".}
|
||||||
|
|
||||||
type
|
type
|
||||||
C_TextFile {.importc: "FILE", nodecl, final, incompleteStruct.} = object
|
C_TextFile {.importc: "FILE", header: "<stdio.h>",
|
||||||
C_BinaryFile {.importc: "FILE", nodecl, final, incompleteStruct.} = object
|
final, incompleteStruct.} = object
|
||||||
|
C_BinaryFile {.importc: "FILE", header: "<stdio.h>",
|
||||||
|
final, incompleteStruct.} = object
|
||||||
C_TextFileStar = ptr CTextFile
|
C_TextFileStar = ptr CTextFile
|
||||||
C_BinaryFileStar = ptr CBinaryFile
|
C_BinaryFileStar = ptr CBinaryFile
|
||||||
|
|
||||||
C_JmpBuf {.importc: "jmp_buf".} = array[0..31, int]
|
C_JmpBuf {.importc: "jmp_buf", header: "<setjmp.h>".} = array[0..31, int]
|
||||||
|
|
||||||
var
|
var
|
||||||
c_stdin {.importc: "stdin", noDecl.}: C_TextFileStar
|
c_stdin {.importc: "stdin", header: "<stdio.h>".}: C_TextFileStar
|
||||||
c_stdout {.importc: "stdout", noDecl.}: C_TextFileStar
|
c_stdout {.importc: "stdout", header: "<stdio.h>".}: C_TextFileStar
|
||||||
c_stderr {.importc: "stderr", noDecl.}: C_TextFileStar
|
c_stderr {.importc: "stderr", header: "<stdio.h>".}: C_TextFileStar
|
||||||
|
|
||||||
# constants faked as variables:
|
# constants faked as variables:
|
||||||
when not defined(SIGINT):
|
when not defined(SIGINT):
|
||||||
|
|
@ -51,59 +56,70 @@ else:
|
||||||
SIGBUS {.importc: "SIGSEGV", nodecl.}: cint
|
SIGBUS {.importc: "SIGSEGV", nodecl.}: cint
|
||||||
# only Mac OS X has this shit
|
# only Mac OS X has this shit
|
||||||
|
|
||||||
proc c_longjmp(jmpb: C_JmpBuf, retval: cint) {.nodecl, importc: "longjmp".}
|
proc c_longjmp(jmpb: C_JmpBuf, retval: cint) {.
|
||||||
proc c_setjmp(jmpb: var C_JmpBuf): cint {.nodecl, importc: "setjmp".}
|
header: "<setjmp.h>", importc: "longjmp".}
|
||||||
|
proc c_setjmp(jmpb: var C_JmpBuf): cint {.
|
||||||
|
header: "<setjmp.h>", importc: "setjmp".}
|
||||||
|
|
||||||
proc c_signal(sig: cint, handler: proc (a: cint) {.noconv.}) {.
|
proc c_signal(sig: cint, handler: proc (a: cint) {.noconv.}) {.
|
||||||
importc: "signal", header: "<signal.h>".}
|
importc: "signal", header: "<signal.h>".}
|
||||||
proc c_raise(sig: cint) {.importc: "raise", header: "<signal.h>".}
|
proc c_raise(sig: cint) {.importc: "raise", header: "<signal.h>".}
|
||||||
|
|
||||||
proc c_fputs(c: cstring, f: C_TextFileStar) {.importc: "fputs", noDecl.}
|
proc c_fputs(c: cstring, f: C_TextFileStar) {.importc: "fputs",
|
||||||
|
header: "<stdio.h>".}
|
||||||
proc c_fgets(c: cstring, n: int, f: C_TextFileStar): cstring {.
|
proc c_fgets(c: cstring, n: int, f: C_TextFileStar): cstring {.
|
||||||
importc: "fgets", noDecl.}
|
importc: "fgets", header: "<stdio.h>".}
|
||||||
proc c_fgetc(stream: C_TextFileStar): int {.importc: "fgetc", nodecl.}
|
proc c_fgetc(stream: C_TextFileStar): int {.importc: "fgetc",
|
||||||
proc c_ungetc(c: int, f: C_TextFileStar) {.importc: "ungetc", nodecl.}
|
header: "<stdio.h>".}
|
||||||
proc c_putc(c: Char, stream: C_TextFileStar) {.importc: "putc", nodecl.}
|
proc c_ungetc(c: int, f: C_TextFileStar) {.importc: "ungetc",
|
||||||
|
header: "<stdio.h>".}
|
||||||
|
proc c_putc(c: Char, stream: C_TextFileStar) {.importc: "putc",
|
||||||
|
header: "<stdio.h>".}
|
||||||
proc c_fprintf(f: C_TextFileStar, frmt: CString) {.
|
proc c_fprintf(f: C_TextFileStar, frmt: CString) {.
|
||||||
importc: "fprintf", nodecl, varargs.}
|
importc: "fprintf", header: "<stdio.h>", varargs.}
|
||||||
proc c_printf(frmt: CString) {.
|
proc c_printf(frmt: CString) {.
|
||||||
importc: "printf", nodecl, varargs.}
|
importc: "printf", header: "<stdio.h>", varargs.}
|
||||||
|
|
||||||
proc c_fopen(filename, mode: cstring): C_TextFileStar {.
|
proc c_fopen(filename, mode: cstring): C_TextFileStar {.
|
||||||
importc: "fopen", nodecl.}
|
importc: "fopen", header: "<stdio.h>".}
|
||||||
proc c_fclose(f: C_TextFileStar) {.importc: "fclose", nodecl.}
|
proc c_fclose(f: C_TextFileStar) {.importc: "fclose", header: "<stdio.h>".}
|
||||||
|
|
||||||
proc c_sprintf(buf, frmt: CString) {.nodecl, importc: "sprintf", varargs,
|
proc c_sprintf(buf, frmt: CString) {.header: "<stdio.h>",
|
||||||
noSideEffect.}
|
importc: "sprintf", varargs, noSideEffect.}
|
||||||
# we use it only in a way that cannot lead to security issues
|
# we use it only in a way that cannot lead to security issues
|
||||||
|
|
||||||
proc c_fread(buf: Pointer, size, n: int, f: C_BinaryFileStar): int {.
|
proc c_fread(buf: Pointer, size, n: int, f: C_BinaryFileStar): int {.
|
||||||
importc: "fread", noDecl.}
|
importc: "fread", header: "<stdio.h>".}
|
||||||
proc c_fseek(f: C_BinaryFileStar, offset: clong, whence: int): int {.
|
proc c_fseek(f: C_BinaryFileStar, offset: clong, whence: int): int {.
|
||||||
importc: "fseek", noDecl.}
|
importc: "fseek", header: "<stdio.h>".}
|
||||||
|
|
||||||
proc c_fwrite(buf: Pointer, size, n: int, f: C_BinaryFileStar): int {.
|
proc c_fwrite(buf: Pointer, size, n: int, f: C_BinaryFileStar): int {.
|
||||||
importc: "fwrite", noDecl.}
|
importc: "fwrite", header: "<stdio.h>".}
|
||||||
|
|
||||||
proc c_exit(errorcode: cint) {.importc: "exit", nodecl.}
|
proc c_exit(errorcode: cint) {.importc: "exit", header: "<stdlib.h>".}
|
||||||
proc c_ferror(stream: C_TextFileStar): bool {.importc: "ferror", nodecl.}
|
proc c_ferror(stream: C_TextFileStar): bool {.
|
||||||
proc c_fflush(stream: C_TextFileStar) {.importc: "fflush", nodecl.}
|
importc: "ferror", header: "<stdio.h>".}
|
||||||
proc c_abort() {.importc: "abort", nodecl.}
|
proc c_fflush(stream: C_TextFileStar) {.importc: "fflush", header: "<stdio.h>".}
|
||||||
proc c_feof(stream: C_TextFileStar): bool {.importc: "feof", nodecl.}
|
proc c_abort() {.importc: "abort", header: "<stdlib.h>".}
|
||||||
|
proc c_feof(stream: C_TextFileStar): bool {.
|
||||||
|
importc: "feof", header: "<stdio.h>".}
|
||||||
|
|
||||||
proc c_malloc(size: int): pointer {.importc: "malloc", nodecl.}
|
proc c_malloc(size: int): pointer {.importc: "malloc", header: "<stdlib.h>".}
|
||||||
proc c_free(p: pointer) {.importc: "free", nodecl.}
|
proc c_free(p: pointer) {.importc: "free", header: "<stdlib.h>".}
|
||||||
proc c_realloc(p: pointer, newsize: int): pointer {.importc: "realloc", nodecl.}
|
proc c_realloc(p: pointer, newsize: int): pointer {.
|
||||||
|
importc: "realloc", header: "<stdlib.h>".}
|
||||||
|
|
||||||
when not defined(errno):
|
when not defined(errno):
|
||||||
var errno {.importc, header: "<errno.h>".}: cint ## error variable
|
var errno {.importc, header: "<errno.h>".}: cint ## error variable
|
||||||
proc strerror(errnum: cint): cstring {.importc, header: "<string.h>".}
|
proc strerror(errnum: cint): cstring {.importc, header: "<string.h>".}
|
||||||
|
|
||||||
proc c_remove(filename: CString): cint {.importc: "remove", noDecl.}
|
proc c_remove(filename: CString): cint {.
|
||||||
proc c_rename(oldname, newname: CString): cint {.importc: "rename", noDecl.}
|
importc: "remove", header: "<stdio.h>".}
|
||||||
|
proc c_rename(oldname, newname: CString): cint {.
|
||||||
|
importc: "rename", header: "<stdio.h>".}
|
||||||
|
|
||||||
proc c_system(cmd: CString): cint {.importc: "system", header: "<stdlib.h>".}
|
proc c_system(cmd: CString): cint {.importc: "system", header: "<stdlib.h>".}
|
||||||
proc c_getenv(env: CString): CString {.importc: "getenv", noDecl.}
|
proc c_getenv(env: CString): CString {.importc: "getenv", header: "<stdlib.h>".}
|
||||||
proc c_putenv(env: CString): cint {.importc: "putenv", noDecl.}
|
proc c_putenv(env: CString): cint {.importc: "putenv", header: "<stdlib.h>".}
|
||||||
|
|
||||||
{.pop}
|
{.pop}
|
||||||
|
|
|
||||||
|
|
@ -12,10 +12,10 @@
|
||||||
|
|
||||||
proc raiseOverflow {.compilerproc, noinline, noreturn.} =
|
proc raiseOverflow {.compilerproc, noinline, noreturn.} =
|
||||||
# a single proc to reduce code size to a minimum
|
# a single proc to reduce code size to a minimum
|
||||||
raise newException(EOverflow, "over- or underflow")
|
sysFatal(EOverflow, "over- or underflow")
|
||||||
|
|
||||||
proc raiseDivByZero {.compilerproc, noinline, noreturn.} =
|
proc raiseDivByZero {.compilerproc, noinline, noreturn.} =
|
||||||
raise newException(EDivByZero, "divison by zero")
|
sysFatal(EDivByZero, "divison by zero")
|
||||||
|
|
||||||
proc addInt64(a, b: int64): int64 {.compilerProc, inline.} =
|
proc addInt64(a, b: int64): int64 {.compilerProc, inline.} =
|
||||||
result = a +% b
|
result = a +% b
|
||||||
|
|
@ -322,16 +322,16 @@ when not defined(mulInt):
|
||||||
# written in other languages.
|
# written in other languages.
|
||||||
|
|
||||||
proc raiseFloatInvalidOp {.noinline, noreturn.} =
|
proc raiseFloatInvalidOp {.noinline, noreturn.} =
|
||||||
raise newException(EFloatInvalidOp, "FPU operation caused a NaN result")
|
sysFatal(EFloatInvalidOp, "FPU operation caused a NaN result")
|
||||||
|
|
||||||
proc nanCheck(x: float64) {.compilerProc, inline.} =
|
proc nanCheck(x: float64) {.compilerProc, inline.} =
|
||||||
if x != x: raiseFloatInvalidOp()
|
if x != x: raiseFloatInvalidOp()
|
||||||
|
|
||||||
proc raiseFloatOverflow(x: float64) {.noinline, noreturn.} =
|
proc raiseFloatOverflow(x: float64) {.noinline, noreturn.} =
|
||||||
if x > 0.0:
|
if x > 0.0:
|
||||||
raise newException(EFloatOverflow, "FPU operation caused an overflow")
|
sysFatal(EFloatOverflow, "FPU operation caused an overflow")
|
||||||
else:
|
else:
|
||||||
raise newException(EFloatUnderflow, "FPU operations caused an underflow")
|
sysFatal(EFloatUnderflow, "FPU operations caused an underflow")
|
||||||
|
|
||||||
proc infCheck(x: float64) {.compilerProc, inline.} =
|
proc infCheck(x: float64) {.compilerProc, inline.} =
|
||||||
if x != 0.0 and x*0.5 == x: raiseFloatOverflow(x)
|
if x != 0.0 and x*0.5 == x: raiseFloatOverflow(x)
|
||||||
|
|
|
||||||
|
|
@ -223,6 +223,4 @@ proc FieldDiscriminantCheck(oldDiscVal, newDiscVal: int,
|
||||||
var oldBranch = selectBranch(oldDiscVal, L, a)
|
var oldBranch = selectBranch(oldDiscVal, L, a)
|
||||||
var newBranch = selectBranch(newDiscVal, L, a)
|
var newBranch = selectBranch(newDiscVal, L, a)
|
||||||
if newBranch != oldBranch and oldDiscVal != 0:
|
if newBranch != oldBranch and oldDiscVal != 0:
|
||||||
raise newException(EInvalidField,
|
sysFatal(EInvalidField, "assignment to discriminant changes object branch")
|
||||||
"assignment to discriminant changes object branch")
|
|
||||||
|
|
||||||
|
|
|
||||||
|
|
@ -187,7 +187,7 @@ template lockChannel(q: expr, action: stmt) {.immediate.} =
|
||||||
|
|
||||||
template sendImpl(q: expr) {.immediate.} =
|
template sendImpl(q: expr) {.immediate.} =
|
||||||
if q.mask == ChannelDeadMask:
|
if q.mask == ChannelDeadMask:
|
||||||
raise newException(EDeadThread, "cannot send message; thread died")
|
sysFatal(EDeadThread, "cannot send message; thread died")
|
||||||
acquireSys(q.lock)
|
acquireSys(q.lock)
|
||||||
var m: TMsg
|
var m: TMsg
|
||||||
shallowCopy(m, msg)
|
shallowCopy(m, msg)
|
||||||
|
|
@ -211,7 +211,7 @@ proc llRecv(q: PRawChannel, res: pointer, typ: PNimType) =
|
||||||
q.ready = false
|
q.ready = false
|
||||||
if typ != q.elemType:
|
if typ != q.elemType:
|
||||||
releaseSys(q.lock)
|
releaseSys(q.lock)
|
||||||
raise newException(EInvalidValue, "cannot receive message of wrong type")
|
sysFatal(EInvalidValue, "cannot receive message of wrong type")
|
||||||
rawRecv(q, res, typ)
|
rawRecv(q, res, typ)
|
||||||
releaseSys(q.lock)
|
releaseSys(q.lock)
|
||||||
|
|
||||||
|
|
|
||||||
77
lib/system/chcks.nim
Normal file
77
lib/system/chcks.nim
Normal file
|
|
@ -0,0 +1,77 @@
|
||||||
|
#
|
||||||
|
#
|
||||||
|
# Nimrod's Runtime Library
|
||||||
|
# (c) Copyright 2013 Andreas Rumpf
|
||||||
|
#
|
||||||
|
# See the file "copying.txt", included in this
|
||||||
|
# distribution, for details about the copyright.
|
||||||
|
#
|
||||||
|
|
||||||
|
# Implementation of some runtime checks.
|
||||||
|
|
||||||
|
proc raiseRangeError(val: biggestInt) {.compilerproc, noreturn, noinline.} =
|
||||||
|
when hostOs == "standalone":
|
||||||
|
sysFatal(EOutOfRange, "value out of range")
|
||||||
|
else:
|
||||||
|
sysFatal(EOutOfRange, "value out of range: ", $val)
|
||||||
|
|
||||||
|
proc raiseIndexError() {.compilerproc, noreturn, noinline.} =
|
||||||
|
sysFatal(EInvalidIndex, "index out of bounds")
|
||||||
|
|
||||||
|
proc raiseFieldError(f: string) {.compilerproc, noreturn, noinline.} =
|
||||||
|
sysFatal(EInvalidField, f, " is not accessible")
|
||||||
|
|
||||||
|
proc chckIndx(i, a, b: int): int =
|
||||||
|
if i >= a and i <= b:
|
||||||
|
return i
|
||||||
|
else:
|
||||||
|
raiseIndexError()
|
||||||
|
|
||||||
|
proc chckRange(i, a, b: int): int =
|
||||||
|
if i >= a and i <= b:
|
||||||
|
return i
|
||||||
|
else:
|
||||||
|
raiseRangeError(i)
|
||||||
|
|
||||||
|
proc chckRange64(i, a, b: int64): int64 {.compilerproc.} =
|
||||||
|
if i >= a and i <= b:
|
||||||
|
return i
|
||||||
|
else:
|
||||||
|
raiseRangeError(i)
|
||||||
|
|
||||||
|
proc chckRangeF(x, a, b: float): float =
|
||||||
|
if x >= a and x <= b:
|
||||||
|
return x
|
||||||
|
else:
|
||||||
|
when hostOS == "standalone":
|
||||||
|
sysFatal(EOutOfRange, "value out of range")
|
||||||
|
else:
|
||||||
|
sysFatal(EOutOfRange, "value out of range: ", $x)
|
||||||
|
|
||||||
|
proc chckNil(p: pointer) =
|
||||||
|
if p == nil:
|
||||||
|
sysFatal(EInvalidValue, "attempt to write to a nil address")
|
||||||
|
#c_raise(SIGSEGV)
|
||||||
|
|
||||||
|
proc chckObj(obj, subclass: PNimType) {.compilerproc.} =
|
||||||
|
# checks if obj is of type subclass:
|
||||||
|
var x = obj
|
||||||
|
if x == subclass: return # optimized fast path
|
||||||
|
while x != subclass:
|
||||||
|
if x == nil:
|
||||||
|
sysFatal(EInvalidObjectConversion, "invalid object conversion")
|
||||||
|
break
|
||||||
|
x = x.base
|
||||||
|
|
||||||
|
proc chckObjAsgn(a, b: PNimType) {.compilerproc, inline.} =
|
||||||
|
if a != b:
|
||||||
|
sysFatal(EInvalidObjectAssignment, "invalid object assignment")
|
||||||
|
|
||||||
|
proc isObj(obj, subclass: PNimType): bool {.compilerproc.} =
|
||||||
|
# checks if obj is of type subclass:
|
||||||
|
var x = obj
|
||||||
|
if x == subclass: return true # optimized fast path
|
||||||
|
while x != subclass:
|
||||||
|
if x == nil: return false
|
||||||
|
x = x.base
|
||||||
|
return true
|
||||||
|
|
@ -10,8 +10,6 @@
|
||||||
|
|
||||||
# Bare-bones implementation of some things for embedded targets.
|
# Bare-bones implementation of some things for embedded targets.
|
||||||
|
|
||||||
proc writeToStdErr(msg: CString) = write(stdout, msg)
|
|
||||||
|
|
||||||
proc chckIndx(i, a, b: int): int {.inline, compilerproc.}
|
proc chckIndx(i, a, b: int): int {.inline, compilerproc.}
|
||||||
proc chckRange(i, a, b: int): int {.inline, compilerproc.}
|
proc chckRange(i, a, b: int): int {.inline, compilerproc.}
|
||||||
proc chckRangeF(x, a, b: float): float {.inline, compilerproc.}
|
proc chckRangeF(x, a, b: float): float {.inline, compilerproc.}
|
||||||
|
|
@ -35,72 +33,11 @@ proc quitOrDebug() {.inline.} =
|
||||||
quit(1)
|
quit(1)
|
||||||
|
|
||||||
proc raiseException(e: ref E_Base, ename: CString) {.compilerRtl.} =
|
proc raiseException(e: ref E_Base, ename: CString) {.compilerRtl.} =
|
||||||
writeToStdErr(ename)
|
sysFatal(ENoExceptionToReraise, "exception handling is not available")
|
||||||
|
|
||||||
proc reraiseException() {.compilerRtl.} =
|
proc reraiseException() {.compilerRtl.} =
|
||||||
writeToStdErr("reraise not supported")
|
sysFatal(ENoExceptionToReraise, "no exception to reraise")
|
||||||
|
|
||||||
proc WriteStackTrace() = nil
|
proc WriteStackTrace() = nil
|
||||||
|
|
||||||
proc setControlCHook(hook: proc () {.noconv.}) =
|
proc setControlCHook(hook: proc () {.noconv.}) = nil
|
||||||
# ugly cast, but should work on all architectures:
|
|
||||||
type TSignalHandler = proc (sig: cint) {.noconv.}
|
|
||||||
c_signal(SIGINT, cast[TSignalHandler](hook))
|
|
||||||
|
|
||||||
proc raiseRangeError(val: biggestInt) {.compilerproc, noreturn, noinline.} =
|
|
||||||
writeToStdErr("value out of range")
|
|
||||||
|
|
||||||
proc raiseIndexError() {.compilerproc, noreturn, noinline.} =
|
|
||||||
writeToStdErr("index out of bounds")
|
|
||||||
|
|
||||||
proc raiseFieldError(f: string) {.compilerproc, noreturn, noinline.} =
|
|
||||||
writeToStdErr("field is not accessible")
|
|
||||||
|
|
||||||
proc chckIndx(i, a, b: int): int =
|
|
||||||
if i >= a and i <= b:
|
|
||||||
return i
|
|
||||||
else:
|
|
||||||
raiseIndexError()
|
|
||||||
|
|
||||||
proc chckRange(i, a, b: int): int =
|
|
||||||
if i >= a and i <= b:
|
|
||||||
return i
|
|
||||||
else:
|
|
||||||
raiseRangeError(i)
|
|
||||||
|
|
||||||
proc chckRange64(i, a, b: int64): int64 {.compilerproc.} =
|
|
||||||
if i >= a and i <= b:
|
|
||||||
return i
|
|
||||||
else:
|
|
||||||
raiseRangeError(i)
|
|
||||||
|
|
||||||
proc chckRangeF(x, a, b: float): float =
|
|
||||||
if x >= a and x <= b:
|
|
||||||
return x
|
|
||||||
else:
|
|
||||||
raise newException(EOutOfRange, "value " & $x & " out of range")
|
|
||||||
|
|
||||||
proc chckNil(p: pointer) =
|
|
||||||
if p == nil: c_raise(SIGSEGV)
|
|
||||||
|
|
||||||
proc chckObj(obj, subclass: PNimType) {.compilerproc.} =
|
|
||||||
# checks if obj is of type subclass:
|
|
||||||
var x = obj
|
|
||||||
if x == subclass: return # optimized fast path
|
|
||||||
while x != subclass:
|
|
||||||
if x == nil:
|
|
||||||
raise newException(EInvalidObjectConversion, "invalid object conversion")
|
|
||||||
x = x.base
|
|
||||||
|
|
||||||
proc chckObjAsgn(a, b: PNimType) {.compilerproc, inline.} =
|
|
||||||
if a != b:
|
|
||||||
raise newException(EInvalidObjectAssignment, "invalid object assignment")
|
|
||||||
|
|
||||||
proc isObj(obj, subclass: PNimType): bool {.compilerproc.} =
|
|
||||||
# checks if obj is of type subclass:
|
|
||||||
var x = obj
|
|
||||||
if x == subclass: return true # optimized fast path
|
|
||||||
while x != subclass:
|
|
||||||
if x == nil: return false
|
|
||||||
x = x.base
|
|
||||||
return true
|
|
||||||
|
|
|
||||||
|
|
@ -249,7 +249,7 @@ proc raiseException(e: ref E_Base, ename: CString) {.compilerRtl.} =
|
||||||
|
|
||||||
proc reraiseException() {.compilerRtl.} =
|
proc reraiseException() {.compilerRtl.} =
|
||||||
if currException == nil:
|
if currException == nil:
|
||||||
raise newException(ENoExceptionToReraise, "no exception to reraise")
|
sysFatal(ENoExceptionToReraise, "no exception to reraise")
|
||||||
else:
|
else:
|
||||||
raiseExceptionAux(currException)
|
raiseExceptionAux(currException)
|
||||||
|
|
||||||
|
|
@ -324,63 +324,3 @@ proc setControlCHook(hook: proc () {.noconv.}) =
|
||||||
# ugly cast, but should work on all architectures:
|
# ugly cast, but should work on all architectures:
|
||||||
type TSignalHandler = proc (sig: cint) {.noconv.}
|
type TSignalHandler = proc (sig: cint) {.noconv.}
|
||||||
c_signal(SIGINT, cast[TSignalHandler](hook))
|
c_signal(SIGINT, cast[TSignalHandler](hook))
|
||||||
|
|
||||||
proc raiseRangeError(val: biggestInt) {.compilerproc, noreturn, noinline.} =
|
|
||||||
raise newException(EOutOfRange, "value " & $val & " out of range")
|
|
||||||
|
|
||||||
proc raiseIndexError() {.compilerproc, noreturn, noinline.} =
|
|
||||||
raise newException(EInvalidIndex, "index out of bounds")
|
|
||||||
|
|
||||||
proc raiseFieldError(f: string) {.compilerproc, noreturn, noinline.} =
|
|
||||||
raise newException(EInvalidField, f & " is not accessible")
|
|
||||||
|
|
||||||
proc chckIndx(i, a, b: int): int =
|
|
||||||
if i >= a and i <= b:
|
|
||||||
return i
|
|
||||||
else:
|
|
||||||
raiseIndexError()
|
|
||||||
|
|
||||||
proc chckRange(i, a, b: int): int =
|
|
||||||
if i >= a and i <= b:
|
|
||||||
return i
|
|
||||||
else:
|
|
||||||
raiseRangeError(i)
|
|
||||||
|
|
||||||
proc chckRange64(i, a, b: int64): int64 {.compilerproc.} =
|
|
||||||
if i >= a and i <= b:
|
|
||||||
return i
|
|
||||||
else:
|
|
||||||
raiseRangeError(i)
|
|
||||||
|
|
||||||
proc chckRangeF(x, a, b: float): float =
|
|
||||||
if x >= a and x <= b:
|
|
||||||
return x
|
|
||||||
else:
|
|
||||||
raise newException(EOutOfRange, "value " & $x & " out of range")
|
|
||||||
|
|
||||||
proc chckNil(p: pointer) =
|
|
||||||
if p == nil:
|
|
||||||
raise newException(EInvalidValue, "attempt to write to a nil address")
|
|
||||||
#c_raise(SIGSEGV)
|
|
||||||
|
|
||||||
proc chckObj(obj, subclass: PNimType) {.compilerproc.} =
|
|
||||||
# checks if obj is of type subclass:
|
|
||||||
var x = obj
|
|
||||||
if x == subclass: return # optimized fast path
|
|
||||||
while x != subclass:
|
|
||||||
if x == nil:
|
|
||||||
raise newException(EInvalidObjectConversion, "invalid object conversion")
|
|
||||||
x = x.base
|
|
||||||
|
|
||||||
proc chckObjAsgn(a, b: PNimType) {.compilerproc, inline.} =
|
|
||||||
if a != b:
|
|
||||||
raise newException(EInvalidObjectAssignment, "invalid object assignment")
|
|
||||||
|
|
||||||
proc isObj(obj, subclass: PNimType): bool {.compilerproc.} =
|
|
||||||
# checks if obj is of type subclass:
|
|
||||||
var x = obj
|
|
||||||
if x == subclass: return true # optimized fast path
|
|
||||||
while x != subclass:
|
|
||||||
if x == nil: return false
|
|
||||||
x = x.base
|
|
||||||
return true
|
|
||||||
|
|
|
||||||
|
|
@ -16,39 +16,44 @@
|
||||||
# of the standard library!
|
# of the standard library!
|
||||||
|
|
||||||
|
|
||||||
proc fputs(c: cstring, f: TFile) {.importc: "fputs", noDecl, tags: [FWriteIO].}
|
proc fputs(c: cstring, f: TFile) {.importc: "fputs", header: "<stdio.h>",
|
||||||
proc fgets(c: cstring, n: int, f: TFile): cstring {.importc: "fgets", noDecl,
|
|
||||||
tags: [FReadIO].}
|
|
||||||
proc fgetc(stream: TFile): cint {.importc: "fgetc", nodecl, tags: [FReadIO].}
|
|
||||||
proc ungetc(c: cint, f: TFile) {.importc: "ungetc", nodecl, tags: [].}
|
|
||||||
proc putc(c: Char, stream: TFile) {.importc: "putc", nodecl, tags: [FWriteIO].}
|
|
||||||
proc fprintf(f: TFile, frmt: CString) {.importc: "fprintf", nodecl, varargs,
|
|
||||||
tags: [FWriteIO].}
|
tags: [FWriteIO].}
|
||||||
proc strlen(c: cstring): int {.importc: "strlen", nodecl, tags: [].}
|
proc fgets(c: cstring, n: int, f: TFile): cstring {.
|
||||||
|
importc: "fgets", header: "<stdio.h>", tags: [FReadIO].}
|
||||||
|
proc fgetc(stream: TFile): cint {.importc: "fgetc", header: "<stdio.h>",
|
||||||
|
tags: [FReadIO].}
|
||||||
|
proc ungetc(c: cint, f: TFile) {.importc: "ungetc", header: "<stdio.h>",
|
||||||
|
tags: [].}
|
||||||
|
proc putc(c: Char, stream: TFile) {.importc: "putc", header: "<stdio.h>",
|
||||||
|
tags: [FWriteIO].}
|
||||||
|
proc fprintf(f: TFile, frmt: CString) {.importc: "fprintf",
|
||||||
|
header: "<stdio.h>", varargs, tags: [FWriteIO].}
|
||||||
|
proc strlen(c: cstring): int {.
|
||||||
|
importc: "strlen", header: "<string.h>", tags: [].}
|
||||||
|
|
||||||
|
|
||||||
# C routine that is used here:
|
# C routine that is used here:
|
||||||
proc fread(buf: Pointer, size, n: int, f: TFile): int {.
|
proc fread(buf: Pointer, size, n: int, f: TFile): int {.
|
||||||
importc: "fread", noDecl, tags: [FReadIO].}
|
importc: "fread", header: "<stdio.h>", tags: [FReadIO].}
|
||||||
proc fseek(f: TFile, offset: clong, whence: int): int {.
|
proc fseek(f: TFile, offset: clong, whence: int): int {.
|
||||||
importc: "fseek", noDecl, tags: [].}
|
importc: "fseek", header: "<stdio.h>", tags: [].}
|
||||||
proc ftell(f: TFile): int {.importc: "ftell", noDecl, tags: [].}
|
proc ftell(f: TFile): int {.importc: "ftell", header: "<stdio.h>", tags: [].}
|
||||||
proc setvbuf(stream: TFile, buf: pointer, typ, size: cint): cint {.
|
proc setvbuf(stream: TFile, buf: pointer, typ, size: cint): cint {.
|
||||||
importc, nodecl, tags: [].}
|
importc, header: "<stdio.h>", tags: [].}
|
||||||
|
|
||||||
{.push stackTrace:off, profiler:off.}
|
{.push stackTrace:off, profiler:off.}
|
||||||
proc write(f: TFile, c: cstring) = fputs(c, f)
|
proc write(f: TFile, c: cstring) = fputs(c, f)
|
||||||
{.pop.}
|
{.pop.}
|
||||||
|
|
||||||
var
|
var
|
||||||
IOFBF {.importc: "_IOFBF", nodecl.}: cint
|
IOFBF {.importc: "_IOFBF", header: "<stdio.h>".}: cint
|
||||||
IONBF {.importc: "_IONBF", nodecl.}: cint
|
IONBF {.importc: "_IONBF", header: "<stdio.h>".}: cint
|
||||||
|
|
||||||
const
|
const
|
||||||
buf_size = 4000
|
buf_size = 4000
|
||||||
|
|
||||||
proc raiseEIO(msg: string) {.noinline, noreturn.} =
|
proc raiseEIO(msg: string) {.noinline, noreturn.} =
|
||||||
raise newException(EIO, msg)
|
sysFatal(EIO, msg)
|
||||||
|
|
||||||
proc readLine(f: TFile, line: var TaintedString): bool =
|
proc readLine(f: TFile, line: var TaintedString): bool =
|
||||||
# of course this could be optimized a bit; but IO is slow anyway...
|
# of course this could be optimized a bit; but IO is slow anyway...
|
||||||
|
|
@ -197,7 +202,7 @@ proc Open(f: var TFile, filename: string,
|
||||||
f = cast[TFile](p)
|
f = cast[TFile](p)
|
||||||
if bufSize > 0 and bufSize <= high(cint).int:
|
if bufSize > 0 and bufSize <= high(cint).int:
|
||||||
if setvbuf(f, nil, IOFBF, bufSize.cint) != 0'i32:
|
if setvbuf(f, nil, IOFBF, bufSize.cint) != 0'i32:
|
||||||
raise newException(EOutOfMemory, "out of memory")
|
sysFatal(EOutOfMemory, "out of memory")
|
||||||
elif bufSize == 0:
|
elif bufSize == 0:
|
||||||
discard setvbuf(f, nil, IONBF, 0)
|
discard setvbuf(f, nil, IONBF, 0)
|
||||||
|
|
||||||
|
|
|
||||||
4
tests/manyloc/standalone/barebone.nim
Normal file
4
tests/manyloc/standalone/barebone.nim
Normal file
|
|
@ -0,0 +1,4 @@
|
||||||
|
|
||||||
|
proc printf(frmt: cstring) {.varargs, header: "<stdio.h>", cdecl.}
|
||||||
|
|
||||||
|
printf("hi %ld\n", 4777)
|
||||||
2
tests/manyloc/standalone/barebone.nimrod.cfg
Normal file
2
tests/manyloc/standalone/barebone.nimrod.cfg
Normal file
|
|
@ -0,0 +1,2 @@
|
||||||
|
--os:standalone
|
||||||
|
--deadCodeElim:on
|
||||||
19
tests/manyloc/standalone/panicoverride.nim
Normal file
19
tests/manyloc/standalone/panicoverride.nim
Normal file
|
|
@ -0,0 +1,19 @@
|
||||||
|
|
||||||
|
proc printf(frmt: cstring) {.varargs, importc, header: "<stdio.h>", cdecl.}
|
||||||
|
proc exit(code: int) {.importc, header: "<stdlib.h>", cdecl.}
|
||||||
|
|
||||||
|
{.push stack_trace: off, profiler:off.}
|
||||||
|
|
||||||
|
proc rawoutput(s: string) =
|
||||||
|
printf("%s\n", s)
|
||||||
|
|
||||||
|
proc panic(s: string) =
|
||||||
|
rawoutput(s)
|
||||||
|
exit(1)
|
||||||
|
|
||||||
|
# Alternatively we also could implement these 2 here:
|
||||||
|
#
|
||||||
|
# template sysFatal(exceptn: typeDesc, message: string)
|
||||||
|
# template sysFatal(exceptn: typeDesc, message, arg: string)
|
||||||
|
|
||||||
|
{.pop.}
|
||||||
Loading…
Add table
Add a link
Reference in a new issue