mirror of
https://github.com/darlinghq/darling-gdb.git
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270 lines
10 KiB
C
270 lines
10 KiB
C
/*
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* (c) Copyright 1990-1996 OPEN SOFTWARE FOUNDATION, INC.
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* (c) Copyright 1990-1996 HEWLETT-PACKARD COMPANY
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* (c) Copyright 1990-1996 DIGITAL EQUIPMENT CORPORATION
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* (c) Copyright 1991, 1992 Siemens-Nixdorf Information Systems
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* To anyone who acknowledges that this file is provided "AS IS" without
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* any express or implied warranty: permission to use, copy, modify, and
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* distribute this file for any purpose is hereby granted without fee,
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* provided that the above copyright notices and this notice appears in
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* all source code copies, and that none of the names listed above be used
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* in advertising or publicity pertaining to distribution of the software
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* without specific, written prior permission. None of these organizations
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* makes any representations about the suitability of this software for
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* any purpose.
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*/
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/*
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* TCB-related type definitions.
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*/
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#ifndef CMA_TCB_DEFS
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#define CMA_TCB_DEFS
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/*
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* INCLUDE FILES
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*/
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# if !_CMA_THREAD_SYNC_IO_
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# include <cma_thread_io.h>
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# endif
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#include <cma.h>
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#include <cma_debug_client.h>
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#include <cma_attr.h>
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#include <cma_defs.h>
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#include <cma_handle.h>
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#include <cma_queue.h>
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#if _CMA_OS_ == _CMA__UNIX
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# if defined(SNI_DCOSX)
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# include <sys/ucontext.h>
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# endif
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# include <signal.h>
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#endif
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#include <cma_sched.h>
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/*
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* CONSTANTS AND MACROS
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*/
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#if _CMA_PLATFORM_ == _CMA__IBMR2_UNIX
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# define cma__c_ibmr2_ctx_stack_size 2048
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# define cma__c_ibmr2_ctx_stack_top (cma__c_ibmr2_ctx_stack_size - 1)
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#endif
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/*
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* TYPEDEFS
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*/
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#ifndef __STDC__
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# if _CMA_HARDWARE_ != _CMA__HPPA
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struct CMA__T_SEMAPHORE;
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# endif
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struct CMA__T_INT_CV;
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struct CMA__T_INT_MUTEX;
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struct CMA__T_INT_TCB;
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#endif
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typedef cma_t_address *cma__t_context_list;
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typedef struct CMA__T_TCB_PAD {
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/*
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* Adjust to align the tcb prolog at byte 32.
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* 12 bytes are required as object header is currently
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* 20 bytes long.
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*/
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cma_t_integer pad1; /* pad bytes */
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cma_t_integer pad2; /* pad bytes */
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cma_t_integer pad3; /* pad bytes */
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} cma__t_tcb_pad;
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#if (_CMA_OS_ == _CMA__UNIX) && !_CMA_THREAD_SYNC_IO_
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typedef struct CMA__T_TCB_SELECT {
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cma__t_queue queue;
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#if (_CMA_UNIX_TYPE != _CMA__SVR4)
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cma__t_file_mask *rfds;
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cma__t_file_mask *wfds;
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cma__t_file_mask *efds;
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#else
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cma__t_poll_info poll_info;
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#endif /* (_CMA_UNIX_TYPE != _CMA__SVR4) */
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cma_t_integer nfound;
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} cma__t_tcb_select;
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#endif
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typedef struct CMA__T_TCB_TIME {
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cma__t_queue queue; /* must be first entry! */
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cma_t_integer mode;
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struct CMA__T_SEMAPHORE *semaphore; /* used for timed semaphores */
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cma_t_date_time wakeup_time;
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cma_t_integer quanta_remaining;
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} cma__t_tcb_time;
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typedef enum CMA__T_DEBEVT {
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cma__c_debevt_activating = 1, /* First transition to running */
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cma__c_debevt_running = 2, /* Any transition to running */
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cma__c_debevt_preempting = 3, /* Preemted (replaced) another thread */
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cma__c_debevt_blocking = 4, /* Any transition to blocked */
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cma__c_debevt_terminating = 5, /* Final state transition */
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cma__c_debevt_term_alert = 6, /* Terminated due to alert/cancel */
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cma__c_debevt_term_exc = 7, /* Terminated due to exception */
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cma__c_debevt_exc_handled = 8 /* Exception is being handled */
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} cma__t_debevt;
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#define cma__c_debevt__first ((cma_t_integer)cma__c_debevt_activating)
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#define cma__c_debevt__last ((cma_t_integer)cma__c_debevt_exc_handled)
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#define cma__c_debevt__dim (cma__c_debevt__last + 1)
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/*
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* Type defining thread substate, which is used by the debugger.
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* If the state is blocked, substate indicates WHY the thread is blocked.
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*/
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typedef enum CMA__T_SUBSTATE {
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cma__c_substa_normal = 0,
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cma__c_substa_mutex = 1,
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cma__c_substa_cv = 2,
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cma__c_substa_timed_cv = 3,
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cma__c_substa_term_alt = 4,
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cma__c_substa_term_exc = 5,
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cma__c_substa_delay =6,
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cma__c_substa_not_yet_run = 7
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} cma__t_substate;
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#define cma__c_substa__first ((cma_t_integer)cma__c_substa_normal)
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#define cma__c_substa__last ((cma_t_integer)cma__c_substa_not_yet_run)
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#define cma__c_substa__dim (cma__c_substa__last + 1)
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/*
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* Per-thread state for the debugger
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*/
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typedef struct CMA__T_TCB_DEBUG {
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cma_t_boolean on_hold; /* Thread was put on hold by debugger */
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cma_t_boolean activated; /* Activation event was reported */
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cma_t_boolean did_preempt; /* Thread preempted prior one */
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cma_t_address start_pc; /* Start routine address */
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cma_t_address object_addr; /* Addr of thread object */
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cma__t_substate substate; /* Reason blocked, terminated, etc.*/
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cma_t_boolean notify_debugger;/* Notify debugger thread is running */
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cma_t_address SPARE2; /* SPARE */
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cma_t_address SPARE3; /* SPARE */
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struct CMA__T_INT_TCB
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*preempted_tcb; /* TCB of thread that got preempted */
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cma_t_boolean flags[cma__c_debevt__dim];
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/* Events enabled for this thread */
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} cma__t_tcb_debug;
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typedef struct CMA__T_TCB_SCHED {
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cma_t_integer adj_time; /* Abs. time in ticks of last prio adj */
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cma_t_integer tot_time; /* Weighted ave in ticks (scaled) */
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cma_t_integer time_stamp; /* Abs. time in ticks of last update */
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cma_t_integer cpu_time; /* Weighted average in ticks */
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cma_t_integer cpu_ticks; /* # of ticks while comp. (scaled) */
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cma_t_integer q_num; /* Number of last ready queue on */
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cma_t_priority priority; /* Thread priority */
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cma_t_sched_policy policy; /* Scheduling policy of thread */
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cma_t_boolean rtb; /* "Run 'Till Block" scheduling */
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cma_t_boolean spp; /* "Strict Priority Preemption" sched */
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cma_t_boolean fixed_prio; /* Fixed priority */
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cma__t_sched_class class; /* Scheduling class */
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struct CMA__T_VP *processor; /* Current processor (if running) */
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} cma__t_tcb_sched;
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typedef struct CMA__T_INT_ALERT {
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cma_t_boolean pending : 1; /* alert_pending bit */
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cma_t_boolean g_enable : 1; /* general delivery state */
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cma_t_boolean a_enable : 1; /* asynchronous delivery state */
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cma_t_integer spare : 29; /* Pad to longword */
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cma_t_natural count; /* Alert scope nesting count */
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} cma__t_int_alert;
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typedef enum CMA__T_STATE {
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cma__c_state_running = 0, /* For consistency with initial TCB */
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cma__c_state_ready = 1,
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cma__c_state_blocked = 2,
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cma__c_state_terminated = 3
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} cma__t_state;
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#define cma__c_state__first ((cma_t_integer)cma__c_state_running)
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#define cma__c_state__last ((cma_t_integer)cma__c_state_terminated)
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#define cma__c_state__dim (cma__c_state__last + 1)
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typedef enum CMA__T_THKIND {
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cma__c_thkind_initial = 0, /* Initial thread */
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cma__c_thkind_normal = 1, /* Normal thread */
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cma__c_thkind_null = 2 /* A null thread */
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} cma__t_thkind;
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#define cma__c_thkind__first ((cma_t_integer)cma__c_thkind_initial)
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#define cma__c_thkind__last ((cma_t_integer)cma__c_thkind_null)
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#define cma__c_thkind__dim (cma__c_thkind__last + 1)
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typedef enum CMA__T_SYSCALL_STATE {
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cma__c_syscall_ok = 1, /* syscall was not interrupted */
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cma__c_syscall_intintrpt = 1, /* syscall was interrupted by VTALRM */
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cma__c_syscall_extintrpt = 2 /* syscall was interrupted by external signal */
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} cma__t_syscall_state;
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typedef struct CMA__T_INT_TCB {
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/*
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* Fixed part of TCB.
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* Modifications to the following three fields must be coordinated.
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* The object header must always be first, and the prolog must always
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* remain at the same offset (32) for all time. Thus the object header
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* must never grow beyond a maximum of 32 bytes.
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*/
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cma__t_object header; /* Common object header */
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cma__t_tcb_pad pad1; /* Pad required to align prolog */
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cma_t_tcb_prolog prolog; /* Standard prolog for tasks, threads */
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/*
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* Floating part of TCB (fields here on are free to be moved and resized).
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*/
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cma__t_queue threads; /* List of all known threads */
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cma__t_int_attr *attributes; /* Backpointer to attr obj */
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cma__t_state state; /* Current state of thread */
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cma__t_thkind kind; /* Which kind of thread */
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struct CMA__T_INT_MUTEX
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*mutex; /* Mutex to control TCB access */
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struct CMA__T_INT_CV
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*term_cv; /* CV for join */
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struct CMA__T_INT_MUTEX
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*tswait_mutex; /* Mutex for thread-synchronous waits */
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struct CMA__T_INT_CV
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*tswait_cv; /* CV for thread-synchronous waits */
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cma_t_start_routine start_code; /* Address of start routine */
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cma_t_address start_arg; /* Argument to pass to start_code */
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cma__t_queue stack; /* Queue header for stack descr. */
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cma_t_natural context_count; /* Size of context array */
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cma__t_context_list contexts; /* Context value array pointer */
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cma_t_exit_status exit_status; /* Exit status of thread */
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cma_t_address return_value; /* Thread's return value */
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cma__t_async_ctx async_ctx; /* Asynchronous context switch info */
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cma__t_static_ctx static_ctx; /* Static context switch information */
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cma_t_integer event_status; /* Status of semaphore operation */
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cma__t_tcb_time timer; /* Time info for dispatcher */
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cma__t_tcb_sched sched; /* Scheduler info */
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cma__t_tcb_debug debug; /* Debugger info */
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#if _CMA_OS_ == _CMA__UNIX
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# if !_CMA_THREAD_SYNC_IO_
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cma__t_tcb_select select; /* Select info for timed selects */
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# endif
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struct sigaction sigaction_data[NSIG];
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#endif
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cma_t_natural syscall_state; /* set if one of the cma wrapped syscalls was interrupted. */
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cma_t_boolean detached; /* Set if already detached */
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cma_t_boolean terminated; /* Set if terminated */
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cma_t_integer joiners; /* Count of joiners, for zombie frees */
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cma__t_int_alert alert; /* Current alert state info */
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struct CMA__T_INT_CV
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*wait_cv; /* CV thread is currently waiting on */
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struct CMA__T_INT_MUTEX
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*wait_mutex; /* Mutex thread is waiting on */
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struct EXC_CONTEXT_T
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*exc_stack; /* Top of exception stack */
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#if _CMA_PLATFORM_ == _CMA__IBMR2_UNIX
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char ctx_stack[cma__c_ibmr2_ctx_stack_size];
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#endif
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cma_t_integer thd_errno; /* Per-thread errno value */
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#if _CMA_OS_ == _CMA__VMS
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cma_t_integer thd_vmserrno; /* Per-thread VMS errno value */
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#endif
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} cma__t_int_tcb;
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#endif
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