293 lines
6.0 KiB
C
293 lines
6.0 KiB
C
/*
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* vim:ts=8:sw=3:sts=8:noexpandtab:cino=>5n-3f0^-2{2
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*/
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#include "e.h"
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/* yes - i know. glibc specific... but i like being able to do my own */
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/* backtraces! NB: you need CFLAGS="-rdynamic -g" LDFLAGS="-rdynamic -g" */
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#ifdef OBJECT_PARANOIA_CHECK
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/* local subsystem functions */
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static void _e_object_segv(int sig);
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/* local subsystem globals */
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static sigjmp_buf _e_object_segv_buf;
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#endif
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/* externally accessible functions */
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EAPI void *
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e_object_alloc(int size, int type, E_Object_Cleanup_Func cleanup_func)
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{
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E_Object *obj;
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obj = calloc(1, size);
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if (!obj) return NULL;
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obj->magic = E_OBJECT_MAGIC;
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obj->type = type;
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obj->references = 1;
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obj->cleanup_func = cleanup_func;
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return obj;
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}
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EAPI void
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e_object_del(E_Object *obj)
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{
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E_OBJECT_CHECK(obj);
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if (obj->deleted) return;
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if (obj->del_att_func) obj->del_att_func(obj);
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if (obj->del_func) obj->del_func(obj);
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obj->deleted = 1;
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e_object_unref(obj);
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}
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EAPI int
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e_object_is_del(E_Object *obj)
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{
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E_OBJECT_CHECK_RETURN(obj, 1);
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return obj->deleted;
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}
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EAPI void
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e_object_del_func_set(E_Object *obj, E_Object_Cleanup_Func del_func)
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{
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E_OBJECT_CHECK(obj);
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obj->del_func = del_func;
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}
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EAPI void
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e_object_type_set(E_Object *obj, int type)
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{
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E_OBJECT_CHECK(obj);
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obj->type = type;
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}
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EAPI void
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e_object_free(E_Object *obj)
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{
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E_OBJECT_CHECK(obj);
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if (obj->free_att_func) obj->free_att_func(obj);
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/*
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* FIXME:
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* although this is good - if during cleanup the cleanup func calls
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* other generic funcs to do cleanups on the same object... we get bitching.
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* disable for now (the final free of the struct should probably happen after
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* the cleanup func and be done byt he object system - set the magic after
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* cleanup :)
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*/
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#if 0
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obj->magic = E_OBJECT_MAGIC_FREED;
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#endif
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obj->cleanup_func(obj);
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}
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EAPI int
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e_object_ref(E_Object *obj)
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{
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E_OBJECT_CHECK_RETURN(obj, -1);
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obj->references++;
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return obj->references;
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}
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EAPI int
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e_object_unref(E_Object *obj)
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{
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int ref;
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E_OBJECT_CHECK_RETURN(obj, -1);
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obj->references--;
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ref = obj->references;
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if (obj->references == 0) e_object_free(obj);
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return ref;
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}
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EAPI int
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e_object_ref_get(E_Object *obj)
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{
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E_OBJECT_CHECK_RETURN(obj, 0);
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return obj->references;
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}
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EAPI int
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e_object_error(E_Object *obj)
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{
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#ifdef OBJECT_PARANOIA_CHECK
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char buf[4096];
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char bt[8192];
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void *trace[128];
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char **messages = NULL;
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int i, trace_num;
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/* fetch stacktrace */
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trace_num = backtrace(trace, 128);
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messages = backtrace_symbols(trace, trace_num);
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/* build stacktrace */
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bt[0] = 0;
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if (messages)
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{
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for (i = 1; i < trace_num; i++)
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{
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strcat(bt, messages[i]);
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strcat(bt, "\n");
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}
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free(messages);
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}
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/* if NULL obj then dump stacktrace */
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if (!obj)
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{
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snprintf(buf, sizeof(buf),
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"Object is NULL.\n"
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"%s",
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bt);
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}
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/* if obj pointer is non NULL, actually try an access and see if we segv */
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else if (obj)
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{
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struct sigaction act, oact;
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int magic = 0, segv = 0;
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/* setup segv handler */
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act.sa_handler = _e_object_segv;
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act.sa_flags = SA_RESETHAND;
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sigemptyset(&act.sa_mask);
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sigaction(SIGSEGV, &act, &oact);
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/* set a longjump to be within this if statement. only called if we */
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/* segfault */
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if (sigsetjmp(_e_object_segv_buf, 1))
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{
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sigaction(SIGSEGV, &oact, NULL);
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segv = 1;
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}
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else
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{
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/* try access magic value */
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magic = obj->magic;
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/* if pointer is bogus we'd segv and so jump to the if () above */
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/* contents, and thus reset segv handler and set segv flag. */
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/* if not we just continue moving along here and reset handler */
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sigaction(SIGSEGV, &oact, NULL);
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}
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/* if we segfaulted above... */
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if (segv)
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snprintf(buf, sizeof(buf),
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"Object [%p] is an invalid/garbage pointer.\n"
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"Segfault successfully avoided.\n"
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"%s",
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obj,
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bt);
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else
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{
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/* valid ram then... if we freed this object before */
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if (magic == E_OBJECT_MAGIC_FREED)
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snprintf(buf, sizeof(buf),
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"Object [%p] is already freed.\n"
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"%s",
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obj,
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bt);
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/* garbage magic value - pointer to non object */
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else if (magic != E_OBJECT_MAGIC)
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snprintf(buf, sizeof(buf),
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"Object [%p] has garbage magic (%x).\n"
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"%s",
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obj, magic,
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bt);
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else if (obj->references < 0)
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snprintf(buf, sizeof(buf),
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"Object [%p] has negative references (%i).\n"
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"%s",
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obj, obj->references,
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bt);
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else if (obj->references > 100)
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snprintf(buf, sizeof(buf),
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"Object [%p] has unusually high reference count (%i).\n"
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"%s",
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obj, obj->references,
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bt);
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/* it's all ok! */
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else
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{
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return 0;
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}
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}
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}
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/* display actual error message */
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e_error_message_show("%s", buf);
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return 1;
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#else
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return 0;
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#endif
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}
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EAPI void
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e_object_data_set(E_Object *obj, void *data)
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{
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E_OBJECT_CHECK(obj);
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obj->data = data;
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}
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EAPI void *
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e_object_data_get(E_Object *obj)
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{
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E_OBJECT_CHECK_RETURN(obj, NULL);
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return obj->data;
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}
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EAPI void
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e_object_free_attach_func_set(E_Object *obj, void (*func) (void *obj))
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{
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E_OBJECT_CHECK(obj);
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obj->free_att_func = func;
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}
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EAPI void
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e_object_del_attach_func_set(E_Object *obj, void (*func) (void *obj))
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{
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E_OBJECT_CHECK(obj);
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obj->del_att_func = func;
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}
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/*
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void
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e_object_breadcrumb_add(E_Object *obj, char *crumb)
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{
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E_OBJECT_CHECK(obj);
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obj->crumbs = eina_list_append(obj->crumbs, strdup(crumb));
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}
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void
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e_object_breadcrumb_del(E_Object *obj, char *crumb)
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{
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Eina_List *l;
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E_OBJECT_CHECK(obj);
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for (l = obj->crumbs; l; l = l->next)
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{
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if (!strcmp(crumb, l->data))
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{
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free(l->data);
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obj->crumbs = eina_list_remove_list(obj->crumbs, l);
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return;
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}
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}
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}
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void
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e_object_breadcrumb_debug(E_Object *obj)
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{
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Eina_List *l;
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E_OBJECT_CHECK(obj);
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for (l = obj->crumbs; l; l = l->next)
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printf("CRUMB: %s\n", l->data);
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}
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*/
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#ifdef OBJECT_PARANOIA_CHECK
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/* local subsystem functions */
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static void
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_e_object_segv(int sig)
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{
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siglongjmp(_e_object_segv_buf, 1);
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}
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#endif
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