mirror of https://github.com/LeOS-GSI/LeOS-Genesis
411 lines
12 KiB
C
411 lines
12 KiB
C
/**
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* @file spawn.c
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* @author Ambroz Bizjak <ambrop7@gmail.com>
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*
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* @section LICENSE
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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 met:
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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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* 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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* 3. Neither the name of the author nor the
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* names of its contributors may be used to endorse or promote products
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* derived from this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
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* ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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* WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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* DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY
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* DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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* (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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* LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
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* ON 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 THIS
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* SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*
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* @section DESCRIPTION
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*
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* Module which starts a process from a process template on initialization, and
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* stops it on deinitialization.
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*
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* Synopsis:
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* spawn(string template_name, list args)
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*
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* Description:
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* On initialization, creates a new process from the template named
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* 'template_name', with arguments 'args'. On deinitialization, initiates termination
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* of the process and waits for it to terminate. The process can access objects
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* as seen from 'spawn' via the _caller special object.
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*
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* Synopsis:
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* spawn::join()
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*
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* Description:
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* A join() on a spawn() is like a depend() on a provide() which is located at the
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* end of the spawned process.
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*
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* Variables:
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* Exposes objects from the spawned process.
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*/
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#include <stdlib.h>
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#include <string.h>
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#include <misc/offset.h>
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#include <misc/debug.h>
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#include <structure/LinkedList0.h>
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#include <ncd/NCDModule.h>
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#include <ncd/static_strings.h>
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#include <generated/blog_channel_ncd_spawn.h>
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#define ModuleLog(i, ...) NCDModuleInst_Backend_Log((i), BLOG_CURRENT_CHANNEL, __VA_ARGS__)
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#define STATE_WORKING 1
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#define STATE_UP 2
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#define STATE_WAITING 3
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#define STATE_WAITING_TERMINATING 4
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#define STATE_TERMINATING 5
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struct instance {
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NCDModuleInst *i;
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NCDModuleProcess process;
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LinkedList0 clean_list;
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LinkedList0 dirty_list;
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int state;
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};
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struct join_instance {
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NCDModuleInst *i;
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struct instance *spawn;
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LinkedList0Node list_node;
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int is_dirty;
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};
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static void assert_dirty_state (struct instance *o);
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static void process_handler_event (NCDModuleProcess *process, int event);
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static int process_func_getspecialobj (NCDModuleProcess *process, NCD_string_id_t name, NCDObject *out_object);
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static int caller_obj_func_getobj (const NCDObject *obj, NCD_string_id_t name, NCDObject *out_object);
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static void bring_joins_down (struct instance *o);
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static void continue_working (struct instance *o);
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static void continue_terminating (struct instance *o);
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static void instance_free (struct instance *o);
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static void assert_dirty_state (struct instance *o)
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{
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ASSERT(!LinkedList0_IsEmpty(&o->dirty_list) == (o->state == STATE_WAITING || o->state == STATE_WAITING_TERMINATING))
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}
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static void process_handler_event (NCDModuleProcess *process, int event)
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{
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struct instance *o = UPPER_OBJECT(process, struct instance, process);
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assert_dirty_state(o);
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switch (event) {
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case NCDMODULEPROCESS_EVENT_UP: {
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ASSERT(o->state == STATE_WORKING)
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ASSERT(LinkedList0_IsEmpty(&o->dirty_list))
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// set state up
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o->state = STATE_UP;
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// bring joins up
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for (LinkedList0Node *ln = LinkedList0_GetFirst(&o->clean_list); ln; ln = LinkedList0Node_Next(ln)) {
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struct join_instance *join = UPPER_OBJECT(ln, struct join_instance, list_node);
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ASSERT(join->spawn == o)
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ASSERT(!join->is_dirty)
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NCDModuleInst_Backend_Up(join->i);
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}
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} break;
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case NCDMODULEPROCESS_EVENT_DOWN: {
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ASSERT(o->state == STATE_UP)
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ASSERT(LinkedList0_IsEmpty(&o->dirty_list))
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// bring joins down, moving them to the dirty list
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bring_joins_down(o);
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// set state waiting
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o->state = STATE_WAITING;
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// if we have no joins, continue immediately
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if (LinkedList0_IsEmpty(&o->dirty_list)) {
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continue_working(o);
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return;
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}
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} break;
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case NCDMODULEPROCESS_EVENT_TERMINATED: {
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ASSERT(o->state == STATE_TERMINATING)
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ASSERT(LinkedList0_IsEmpty(&o->dirty_list))
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// die finally
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instance_free(o);
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return;
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} break;
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default: ASSERT(0);
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}
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}
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static int process_func_getspecialobj (NCDModuleProcess *process, NCD_string_id_t name, NCDObject *out_object)
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{
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struct instance *o = UPPER_OBJECT(process, struct instance, process);
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if (name == NCD_STRING_CALLER) {
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*out_object = NCDObject_Build(-1, o, NCDObject_no_getvar, caller_obj_func_getobj);
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return 1;
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}
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return 0;
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}
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static int caller_obj_func_getobj (const NCDObject *obj, NCD_string_id_t name, NCDObject *out_object)
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{
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struct instance *o = NCDObject_DataPtr(obj);
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return NCDModuleInst_Backend_GetObj(o->i, name, out_object);
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}
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static void bring_joins_down (struct instance *o)
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{
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LinkedList0Node *ln;
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while (ln = LinkedList0_GetFirst(&o->clean_list)) {
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struct join_instance *join = UPPER_OBJECT(ln, struct join_instance, list_node);
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ASSERT(join->spawn == o)
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ASSERT(!join->is_dirty)
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NCDModuleInst_Backend_Down(join->i);
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LinkedList0_Remove(&o->clean_list, &join->list_node);
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LinkedList0_Prepend(&o->dirty_list, &join->list_node);
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join->is_dirty = 1;
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}
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}
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static void continue_working (struct instance *o)
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{
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ASSERT(o->state == STATE_WAITING)
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ASSERT(LinkedList0_IsEmpty(&o->dirty_list))
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// continue process
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NCDModuleProcess_Continue(&o->process);
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// set state working
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o->state = STATE_WORKING;
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}
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static void continue_terminating (struct instance *o)
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{
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ASSERT(o->state == STATE_WAITING_TERMINATING)
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ASSERT(LinkedList0_IsEmpty(&o->dirty_list))
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// request process to terminate
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NCDModuleProcess_Terminate(&o->process);
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// set state terminating
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o->state = STATE_TERMINATING;
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}
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static void func_new (void *vo, NCDModuleInst *i, const struct NCDModuleInst_new_params *params)
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{
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struct instance *o = vo;
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o->i = i;
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// check arguments
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NCDValRef template_name_arg;
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NCDValRef args_arg;
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if (!NCDVal_ListRead(params->args, 2, &template_name_arg, &args_arg)) {
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ModuleLog(o->i, BLOG_ERROR, "wrong arity");
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goto fail0;
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}
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if (!NCDVal_IsString(template_name_arg) || !NCDVal_IsList(args_arg)) {
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ModuleLog(o->i, BLOG_ERROR, "wrong type");
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goto fail0;
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}
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// signal up.
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// Do it before creating the process so that the process starts initializing before our own process continues.
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NCDModuleInst_Backend_Up(o->i);
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// create process
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if (!NCDModuleProcess_InitValue(&o->process, o->i, template_name_arg, args_arg, process_handler_event)) {
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ModuleLog(o->i, BLOG_ERROR, "NCDModuleProcess_Init failed");
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goto fail0;
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}
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// set object resolution function
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NCDModuleProcess_SetSpecialFuncs(&o->process, process_func_getspecialobj);
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// init lists
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LinkedList0_Init(&o->clean_list);
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LinkedList0_Init(&o->dirty_list);
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// set state working
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o->state = STATE_WORKING;
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return;
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fail0:
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NCDModuleInst_Backend_DeadError(i);
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}
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void instance_free (struct instance *o)
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{
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ASSERT(LinkedList0_IsEmpty(&o->dirty_list))
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// unlink joins
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LinkedList0Node *ln;
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while (ln = LinkedList0_GetFirst(&o->clean_list)) {
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struct join_instance *join = UPPER_OBJECT(ln, struct join_instance, list_node);
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ASSERT(join->spawn == o)
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ASSERT(!join->is_dirty)
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LinkedList0_Remove(&o->clean_list, &join->list_node);
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join->spawn = NULL;
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}
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// free process
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NCDModuleProcess_Free(&o->process);
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NCDModuleInst_Backend_Dead(o->i);
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}
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static void func_die (void *vo)
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{
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struct instance *o = vo;
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ASSERT(o->state != STATE_WAITING_TERMINATING)
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ASSERT(o->state != STATE_TERMINATING)
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assert_dirty_state(o);
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// bring joins down
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if (o->state == STATE_UP) {
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bring_joins_down(o);
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}
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// set state waiting terminating
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o->state = STATE_WAITING_TERMINATING;
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// start terminating now if possible
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if (LinkedList0_IsEmpty(&o->dirty_list)) {
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continue_terminating(o);
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return;
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}
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}
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static void join_func_new (void *vo, NCDModuleInst *i, const struct NCDModuleInst_new_params *params)
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{
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struct join_instance *o = vo;
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o->i = i;
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if (!NCDVal_ListRead(params->args, 0)) {
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ModuleLog(o->i, BLOG_ERROR, "wrong arity");
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goto fail0;
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}
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o->spawn = NCDModuleInst_Backend_GetUser((NCDModuleInst *)params->method_user);
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assert_dirty_state(o->spawn);
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LinkedList0_Prepend(&o->spawn->clean_list, &o->list_node);
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o->is_dirty = 0;
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if (o->spawn->state == STATE_UP) {
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NCDModuleInst_Backend_Up(i);
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}
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return;
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fail0:
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NCDModuleInst_Backend_DeadError(i);
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}
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static void join_func_die (void *vo)
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{
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struct join_instance *o = vo;
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if (o->spawn) {
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assert_dirty_state(o->spawn);
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// remove from list
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if (o->is_dirty) {
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LinkedList0_Remove(&o->spawn->dirty_list, &o->list_node);
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} else {
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LinkedList0_Remove(&o->spawn->clean_list, &o->list_node);
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}
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if (o->is_dirty && LinkedList0_IsEmpty(&o->spawn->dirty_list)) {
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ASSERT(o->spawn->state == STATE_WAITING || o->spawn->state == STATE_WAITING_TERMINATING)
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if (o->spawn->state == STATE_WAITING) {
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continue_working(o->spawn);
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} else {
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continue_terminating(o->spawn);
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}
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}
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}
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NCDModuleInst_Backend_Dead(o->i);
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}
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static int join_func_getobj (void *vo, NCD_string_id_t name, NCDObject *out)
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{
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struct join_instance *o = vo;
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if (!o->spawn) {
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return 0;
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}
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return NCDModuleProcess_GetObj(&o->spawn->process, name, out);
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}
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static void join_func_clean (void *vo)
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{
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struct join_instance *o = vo;
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if (!(o->spawn && o->is_dirty)) {
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return;
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}
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assert_dirty_state(o->spawn);
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ASSERT(o->spawn->state == STATE_WAITING || o->spawn->state == STATE_WAITING_TERMINATING)
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LinkedList0_Remove(&o->spawn->dirty_list, &o->list_node);
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LinkedList0_Prepend(&o->spawn->clean_list, &o->list_node);
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o->is_dirty = 0;
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if (LinkedList0_IsEmpty(&o->spawn->dirty_list)) {
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if (o->spawn->state == STATE_WAITING) {
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continue_working(o->spawn);
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} else {
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continue_terminating(o->spawn);
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}
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}
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}
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static struct NCDModule modules[] = {
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{
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.type = "spawn",
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.func_new2 = func_new,
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.func_die = func_die,
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.alloc_size = sizeof(struct instance)
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}, {
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.type = "synchronous_process", // deprecated name
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.func_new2 = func_new,
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.func_die = func_die,
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.alloc_size = sizeof(struct instance)
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}, {
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.type = "spawn::join",
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.func_new2 = join_func_new,
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.func_die = join_func_die,
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.func_getobj = join_func_getobj,
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.func_clean = join_func_clean,
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.alloc_size = sizeof(struct join_instance),
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.flags = NCDMODULE_FLAG_CAN_RESOLVE_WHEN_DOWN
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}, {
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.type = NULL
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}
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};
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const struct NCDModuleGroup ncdmodule_spawn = {
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.modules = modules
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};
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