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343 lines
11 KiB
C
343 lines
11 KiB
C
/* mpslibcb.c: RAVENBROOK MEMORY POOL SYSTEM LIBRARY INTERFACE (CALLBACK)
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*
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* $Header$
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* Copyright (c) 2005 Ravenbrook Limited. See end of file for license.
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*
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* .purpose: The purpose of this code is
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* 1. permit the MPS Library Interface to be used conveniently when
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* the MPS is packaged as a dynamic library (and in particular a
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* Windows DLL).
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*
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* .readership: For MPS client application developers and MPS developers.
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* .sources: <design/lib/>
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*
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* .freestanding: This is designed to be deployed in a freestanding
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* environment, so we can't use strcmp from <string.h>, so we have to
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* roll our own (in fact we only ever need equality so we define a
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* simpler interface).
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*
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* .mpm.not: This module occupies a halfway house between the MPM and
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* the client. Let's make it clearer: this module should not use any
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* services of the MPM. That is, it should be written as if the client
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* could have, in principle, written it. .mpm.not.why: Perhaps the most
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* compelling reason is that if config.h is included (via mpm.h) then
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* the compile breaks on platform.w3i3mv because of "#define
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* mps_lib_memset memset" in config.h.
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*/
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#include "mpslibcb.h"
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#include "mpslib.h"
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#include "mps.h"
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/* Forward declarations. */
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int mps_lib_callback_default_get_EOF(void);
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mps_lib_FILE *mps_lib_callback_default_get_stderr(void);
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mps_lib_FILE *mps_lib_callback_default_get_stdout(void);
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int mps_lib_callback_default_fputc(int c_, mps_lib_FILE *f_);
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int mps_lib_callback_default_fputs(const char *s_, mps_lib_FILE *f_);
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void *mps_lib_callback_default_memset(void *p_, int c_, size_t n_);
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void *mps_lib_callback_default_memcpy(void *p_, const void *q_, size_t n_);
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int mps_lib_callback_default_memcmp(const void *p_, const void *q_, size_t n_);
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mps_clock_t mps_lib_callback_default_clock(void);
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mps_clock_t mps_lib_callback_default_clocks_per_sec(void);
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unsigned long mps_lib_callback_default_telemetry_control(void);
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int mps_lib_callback_streq(const char *, const char *);
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/* Macros */
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/* See .freestanding */
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#define EQ(p, q) (mps_lib_callback_streq((p), (q)))
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/* We use this to call mps_lib_asssert_fail (which we only ever do
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* unconditionally). See .mpm.not on why we cannot use ASSERT from
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* mpm.h */
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#define AFAIL mps_lib_assert_fail
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/* Replaced UNUSED from mpm.h, see .mpm.not */
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#define UNUSED(x) ((void)(x))
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/* Structures and Types */
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struct mps_lib_callback_s
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{
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int (*lib_get_EOF)(void);
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mps_lib_FILE * (*lib_get_stderr)(void);
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mps_lib_FILE * (*lib_get_stdout)(void);
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int (*lib_fputc)(int, mps_lib_FILE *);
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int (*lib_fputs)(const char *, mps_lib_FILE *);
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void (*lib_assert_fail)(const char *);
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void * (*lib_memset)(void *, int, size_t);
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void * (*lib_memcpy)(void *, const void *, size_t);
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int (*lib_memcmp)(const void *, const void *, size_t);
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mps_clock_t (*clock)(void);
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mps_clock_t (*clocks_per_sec)(void);
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unsigned long (*lib_telemetry_control)(void);
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};
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/* Globals */
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/* .global.why: A global is necessary so that we can store the function
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* pointers that the client gives us. The functions in the mpslib.h
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* interface _are_ global. There is no scope for having one memset
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* function for one Arena and a different memset function for another.
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* */
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/* The default functions are stubs that assert. Except for the
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* assert_fail function (which is called when assertions fail) which
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* will be NULL. This means: if you provide assert_fail and forget
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* something else, you'll know about it. If you do not provide
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* assert_fail then it will probably stop anyway.
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*
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* These functions really do need to fail, so they subvert the checking
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* mechanism (which is in mpm.h and not available to us, see .mpm.not)
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*/
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struct mps_lib_callback_s mps_lib_callback_global = {
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mps_lib_callback_default_get_EOF,
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mps_lib_callback_default_get_stderr,
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mps_lib_callback_default_get_stdout,
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mps_lib_callback_default_fputc,
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mps_lib_callback_default_fputs,
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NULL, /* assert_fail */
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mps_lib_callback_default_memset,
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mps_lib_callback_default_memcpy,
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mps_lib_callback_default_memcmp,
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mps_lib_callback_default_clock,
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mps_lib_callback_default_clocks_per_sec,
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mps_lib_callback_default_telemetry_control
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};
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/* Functions */
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int mps_lib_callback_register(const char *name, mps_lib_function_t f)
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{
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if(NULL == name) {
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return MPS_RES_FAIL;
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}
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if(EQ(name, "mps_lib_get_EOF")) {
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mps_lib_callback_global.lib_get_EOF = (int(*)(void))f;
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} else if(EQ(name, "mps_lib_get_stderr")) {
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mps_lib_callback_global.lib_get_stderr = (mps_lib_FILE *(*)(void))f;
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} else if(EQ(name, "mps_lib_get_stdout")) {
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mps_lib_callback_global.lib_get_stdout = (mps_lib_FILE *(*)(void))f;
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} else if(EQ(name, "mps_lib_fputc")) {
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mps_lib_callback_global.lib_fputc = (int(*)(int, mps_lib_FILE *))f;
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} else if(EQ(name, "mps_lib_fputs")) {
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mps_lib_callback_global.lib_fputs =
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(int(*)(const char *, mps_lib_FILE *))f;
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} else if(EQ(name, "mps_lib_assert_fail")) {
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mps_lib_callback_global.lib_assert_fail = (void(*)(const char *))f;
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} else if(EQ(name, "mps_lib_memset")) {
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mps_lib_callback_global.lib_memset = (void *(*)(void *, int, size_t))f;
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} else if(EQ(name, "mps_lib_memcpy")) {
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mps_lib_callback_global.lib_memcpy =
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(void *(*)(void *, const void *, size_t))f;
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} else if(EQ(name, "mps_lib_memcmp")) {
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mps_lib_callback_global.lib_memcmp =
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(int(*)(const void *, const void *, size_t))f;
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} else if(EQ(name, "mps_clock")) {
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mps_lib_callback_global.clock = (mps_clock_t(*)(void))f;
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} else if(EQ(name, "mps_clocks_per_sec")) {
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mps_lib_callback_global.clocks_per_sec = (mps_clock_t(*)(void))f;
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} else if(EQ(name, "mps_lib_telemetry_control")) {
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mps_lib_callback_global.lib_telemetry_control =
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(unsigned long(*)(void))f;
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} else {
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return MPS_RES_UNIMPL;
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}
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return MPS_RES_OK;
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}
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/* Return non-zero if and only if string p equals string q. */
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int mps_lib_callback_streq(const char *p, const char *q)
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{
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do {
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if(*p == '\0' && *q == '\0') {
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return 1;
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}
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} while(*p++ == *q++);
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return 0;
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}
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int mps_lib_callback_default_get_EOF(void)
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{
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AFAIL("mps_lib_get_EOF needs to be provided");
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return 0;
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}
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mps_lib_FILE *mps_lib_callback_default_get_stderr(void)
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{
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AFAIL("mps_lib_get_stderr needs to be provided");
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return NULL;
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}
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mps_lib_FILE *mps_lib_callback_default_get_stdout(void)
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{
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AFAIL("mps_lib_get_stdout needs to be provided");
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return NULL;
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}
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int mps_lib_callback_default_fputc(int c_, mps_lib_FILE *f_)
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{
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UNUSED(c_);
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UNUSED(f_);
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AFAIL("mps_lib_fputc needs to be provided");
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return 0;
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}
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int mps_lib_callback_default_fputs(const char *s_, mps_lib_FILE *f_)
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{
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UNUSED(s_);
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UNUSED(f_);
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AFAIL("mps_lib_fputs needs to be provided");
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return 0;
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}
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/* No default implementation for mps_lib_assert_fail */
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void *mps_lib_callback_default_memset(void *p_, int c_, size_t n_)
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{
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UNUSED(p_);
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UNUSED(c_);
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UNUSED(n_);
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AFAIL("mps_lib_memset needs to be provided");
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return NULL;
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}
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void *mps_lib_callback_default_memcpy(void *p_, const void *q_, size_t n_)
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{
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UNUSED(p_);
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UNUSED(q_);
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UNUSED(n_);
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AFAIL("mps_lib_memcpy needs to be provided");
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return NULL;
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}
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int mps_lib_callback_default_memcmp(const void *p_, const void *q_, size_t n_)
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{
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UNUSED(p_);
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UNUSED(q_);
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UNUSED(n_);
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AFAIL("mps_lib_memcmp needs to be provided");
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return 0;
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}
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mps_clock_t mps_lib_callback_default_clock(void)
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{
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AFAIL("mps_clock needs to be provided");
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return 0;
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}
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mps_clock_t mps_lib_callback_default_clocks_per_sec(void)
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{
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AFAIL("mps_clocks_per_sec needs to be provided");
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return 0;
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}
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unsigned long mps_lib_callback_default_telemetry_control(void)
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{
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AFAIL("mps_lib_telemetry_control needs to be provided");
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return 0;
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}
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int mps_lib_get_EOF(void)
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{
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return mps_lib_callback_global.lib_get_EOF();
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}
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mps_lib_FILE *mps_lib_get_stderr(void)
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{
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return mps_lib_callback_global.lib_get_stderr();
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}
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mps_lib_FILE *mps_lib_get_stdout(void)
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{
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return mps_lib_callback_global.lib_get_stdout();
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}
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int mps_lib_fputc(int c, mps_lib_FILE *f)
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{
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return mps_lib_callback_global.lib_fputc(c, f);
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}
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int mps_lib_fputs(const char *s, mps_lib_FILE *f)
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{
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return mps_lib_callback_global.lib_fputs(s, f);
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}
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void mps_lib_assert_fail(const char *m)
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{
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mps_lib_callback_global.lib_assert_fail(m);
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}
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void *(mps_lib_memset)(void *p, int c, size_t n)
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{
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return mps_lib_callback_global.lib_memset(p, c, n);
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}
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void *(mps_lib_memcpy)(void *p, const void *q, size_t n)
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{
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return mps_lib_callback_global.lib_memcpy(p, q, n);
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}
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int (mps_lib_memcmp)(const void *p, const void *q, size_t n)
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{
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return mps_lib_callback_global.lib_memcmp(p, q, n);
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}
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mps_clock_t mps_clock(void)
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{
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return mps_lib_callback_global.clock();
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}
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mps_clock_t mps_clocks_per_sec(void)
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{
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return mps_lib_callback_global.clocks_per_sec();
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}
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unsigned long mps_lib_telemetry_control(void)
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{
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return mps_lib_callback_global.lib_telemetry_control();
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}
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/* C. COPYRIGHT AND LICENSE
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*
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* Copyright (C) 2005 Ravenbrook Limited <http://www.ravenbrook.com/>.
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* All rights reserved. This is an open source license. Contact
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* Ravenbrook for commercial licensing options.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are
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* met:
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*
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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*
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in the
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* documentation and/or other materials provided with the distribution.
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*
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* 3. Redistributions in any form must be accompanied by information on how
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* to obtain complete source code for this software and any accompanying
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* software that uses this software. The source code must either be
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* included in the distribution or be available for no more than the cost
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* of distribution plus a nominal fee, and must be freely redistributable
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* under reasonable conditions. For an executable file, complete source
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* code means the source code for all modules it contains. It does not
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* include source code for modules or files that typically accompany the
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* major components of the operating system on which the executable file
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* runs.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS
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* IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
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* TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR
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* PURPOSE, OR NON-INFRINGEMENT, ARE DISCLAIMED. IN NO EVENT SHALL THE
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* COPYRIGHT HOLDERS AND CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
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* NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
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* USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
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* ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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* (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
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* THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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