mirror of
https://github.com/systemd/systemd.git
synced 2024-11-24 10:43:35 +08:00
699 lines
20 KiB
C
699 lines
20 KiB
C
/*-*- Mode: C; c-basic-offset: 8 -*-*/
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#include <assert.h>
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#include <errno.h>
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#include <string.h>
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#include "manager.h"
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#include "hashmap.h"
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#include "macro.h"
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#include "strv.h"
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Manager* manager_new(void) {
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Manager *m;
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if (!(m = new0(Manager, 1)))
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return NULL;
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if (!(m->names = hashmap_new(string_hash_func, string_compare_func)))
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goto fail;
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if (!(m->jobs = hashmap_new(trivial_hash_func, trivial_compare_func)))
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goto fail;
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if (!(m->transaction_jobs = hashmap_new(trivial_hash_func, trivial_compare_func)))
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goto fail;
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return m;
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fail:
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manager_free(m);
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return NULL;
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}
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void manager_free(Manager *m) {
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Name *n;
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Job *j;
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assert(m);
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while ((n = hashmap_first(m->names)))
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name_free(n);
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while ((j = hashmap_steal_first(m->transaction_jobs)))
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job_free(j);
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hashmap_free(m->names);
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hashmap_free(m->jobs);
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hashmap_free(m->transaction_jobs);
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free(m);
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}
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static void transaction_abort(Manager *m) {
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Job *j;
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assert(m);
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while ((j = hashmap_first(m->transaction_jobs)))
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if (j->linked)
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manager_transaction_delete_job(m, j);
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else
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job_free(j);
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assert(hashmap_isempty(m->transaction_jobs));
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assert(!m->transaction_anchor);
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}
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static void transaction_find_jobs_that_matter_to_anchor(Manager *m, Job *j, unsigned generation) {
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JobDependency *l;
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assert(m);
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for (l = j ? j->subject_list : m->transaction_anchor; l; l = l->subject_next) {
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/* This link does not matter */
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if (!l->matters)
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continue;
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/* This name has already been marked */
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if (l->object->generation == generation)
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continue;
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l->object->matters_to_anchor = true;
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l->object->generation = generation;
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transaction_find_jobs_that_matter_to_anchor(m, l->object, generation);
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}
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}
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static bool types_match(JobType a, JobType b, JobType c, JobType d) {
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return
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(a == c && b == d) ||
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(a == d && b == c);
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}
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static int types_merge(JobType *a, JobType b) {
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if (*a == b)
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return 0;
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if (types_match(*a, b, JOB_START, JOB_VERIFY_STARTED))
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*a = JOB_START;
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else if (types_match(*a, b, JOB_START, JOB_RELOAD) ||
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types_match(*a, b, JOB_START, JOB_RELOAD_OR_START) ||
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types_match(*a, b, JOB_VERIFY_STARTED, JOB_RELOAD_OR_START) ||
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types_match(*a, b, JOB_RELOAD, JOB_RELOAD_OR_START))
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*a = JOB_RELOAD_OR_START;
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else if (types_match(*a, b, JOB_START, JOB_RESTART) ||
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types_match(*a, b, JOB_START, JOB_TRY_RESTART) ||
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types_match(*a, b, JOB_VERIFY_STARTED, JOB_RESTART) ||
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types_match(*a, b, JOB_RELOAD, JOB_RESTART) ||
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types_match(*a, b, JOB_RELOAD_OR_START, JOB_RESTART) ||
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types_match(*a, b, JOB_RELOAD_OR_START, JOB_TRY_RESTART) ||
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types_match(*a, b, JOB_RESTART, JOB_TRY_RESTART))
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*a = JOB_RESTART;
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else if (types_match(*a, b, JOB_VERIFY_STARTED, JOB_RELOAD))
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*a = JOB_RELOAD;
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else if (types_match(*a, b, JOB_VERIFY_STARTED, JOB_TRY_RESTART) ||
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types_match(*a, b, JOB_RELOAD, JOB_TRY_RESTART))
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*a = JOB_TRY_RESTART;
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return -EEXIST;
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}
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static void transaction_merge_and_delete_job(Manager *m, Job *j, Job *other, JobType t) {
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JobDependency *l, *last;
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assert(j);
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assert(other);
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assert(j->name == other->name);
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assert(!j->linked);
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j->type = t;
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j->state = JOB_WAITING;
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j->matters_to_anchor = j->matters_to_anchor || other->matters_to_anchor;
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/* Patch us in as new owner of the JobDependency objects */
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last = NULL;
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for (l = other->subject_list; l; l = l->subject_next) {
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assert(l->subject == other);
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l->subject = j;
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last = l;
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}
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/* Merge both lists */
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if (last) {
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last->subject_next = j->subject_list;
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if (j->subject_list)
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j->subject_list->subject_prev = last;
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j->subject_list = other->subject_list;
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}
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/* Patch us in as new owner of the JobDependency objects */
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last = NULL;
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for (l = other->object_list; l; l = l->object_next) {
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assert(l->object == other);
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l->object = j;
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last = l;
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}
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/* Merge both lists */
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if (last) {
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last->object_next = j->object_list;
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if (j->object_list)
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j->object_list->object_prev = last;
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j->object_list = other->object_list;
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}
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/* Kill the other job */
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other->subject_list = NULL;
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other->object_list = NULL;
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manager_transaction_delete_job(m, other);
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}
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static int transaction_merge_jobs(Manager *m) {
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Job *j;
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void *state;
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int r;
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assert(m);
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HASHMAP_FOREACH(j, m->transaction_jobs, state) {
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JobType t = j->type;
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Job *k;
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for (k = j->transaction_next; k; k = k->transaction_next)
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if ((r = types_merge(&t, k->type)) < 0)
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return r;
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while ((k = j->transaction_next)) {
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if (j->linked) {
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transaction_merge_and_delete_job(m, k, j, t);
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j = k;
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} else
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transaction_merge_and_delete_job(m, j, k, t);
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}
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assert(!j->transaction_next);
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assert(!j->transaction_prev);
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}
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return 0;
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}
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static int transaction_verify_order_one(Manager *m, Job *j, Job *from, unsigned generation) {
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void *state;
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Name *n;
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int r;
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assert(m);
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assert(j);
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/* Did we find a cycle? */
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if (j->marker && j->generation == generation) {
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Job *k;
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/* So, we already have been here. We have a
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* cycle. Let's try to break it. We go backwards in our
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* path and try to find a suitable job to remove. */
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for (k = from; k; k = (k->generation == generation ? k->marker : NULL)) {
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if (!k->matters_to_anchor) {
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manager_transaction_delete_job(m, k);
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return -EAGAIN;
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}
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/* Check if this in fact was the beginning of
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* the cycle */
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if (k == j)
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break;
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}
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return -ELOOP;
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}
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j->marker = from;
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j->generation = generation;
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/* We assume that the the dependencies are both-ways, and
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* hence can ignore NAME_AFTER */
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SET_FOREACH(n, j->name->meta.dependencies[NAME_BEFORE], state) {
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Job *o;
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if (!(o = hashmap_get(m->transaction_jobs, n)))
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if (!(o = n->meta.job))
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continue;
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if ((r = transaction_verify_order_one(m, o, j, generation)) < 0)
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return r;
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}
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return 0;
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}
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static int transaction_verify_order(Manager *m, unsigned *generation) {
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bool again;
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assert(m);
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assert(generation);
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do {
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Job *j;
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int r;
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void *state;
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again = false;
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HASHMAP_FOREACH(j, m->transaction_jobs, state) {
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/* Assume merged */
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assert(!j->transaction_next);
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assert(!j->transaction_prev);
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if ((r = transaction_verify_order_one(m, j, NULL, (*generation)++)) < 0) {
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/* There was a cycleq, but it was fixed,
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* we need to restart our algorithm */
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if (r == -EAGAIN) {
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again = true;
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break;
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}
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return r;
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}
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}
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} while (again);
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return 0;
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}
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static void transaction_collect_garbage(Manager *m) {
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bool again;
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assert(m);
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do {
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void *state;
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Job *j;
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again = false;
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HASHMAP_FOREACH(j, m->transaction_jobs, state) {
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if (j->object_list)
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continue;
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manager_transaction_delete_job(m, j);
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again = true;
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break;
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}
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} while (again);
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}
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static int transaction_is_destructive(Manager *m, JobMode mode) {
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void *state;
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Job *j;
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assert(m);
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/* Checks whether applying this transaction means that
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* existing jobs would be replaced */
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HASHMAP_FOREACH(j, m->transaction_jobs, state)
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if (j->name->meta.job && j->name->meta.job != j)
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return -EEXIST;
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return 0;
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}
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static int transaction_apply(Manager *m, JobMode mode) {
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void *state;
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Job *j;
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int r;
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HASHMAP_FOREACH(j, m->transaction_jobs, state) {
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if (j->linked)
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continue;
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if ((r = hashmap_put(m->jobs, UINT32_TO_PTR(j->id), j)) < 0)
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goto rollback;
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}
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while ((j = hashmap_steal_first(m->transaction_jobs))) {
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if (j->linked)
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continue;
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if (j->name->meta.job)
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job_free(j->name->meta.job);
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j->name->meta.job = j;
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j->linked = true;
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/* We're fully installed. Now let's free data we don't
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* need anymore. */
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assert(!j->transaction_next);
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assert(!j->transaction_prev);
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while (j->subject_list)
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job_dependency_free(j->subject_list);
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while (j->object_list)
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job_dependency_free(j->object_list);
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}
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return 0;
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rollback:
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HASHMAP_FOREACH(j, m->transaction_jobs, state) {
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if (j->linked)
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continue;
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hashmap_remove(m->jobs, UINT32_TO_PTR(j->id));
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}
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return r;
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}
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static int transaction_activate(Manager *m, JobMode mode) {
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int r;
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unsigned generation = 1;
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assert(m);
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/* This applies the changes recorded in transaction_jobs to
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* the actual list of jobs, if possible. */
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/* First step: figure out which jobs matter */
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transaction_find_jobs_that_matter_to_anchor(m, NULL, generation++);
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/* Second step: let's merge entries we can merge */
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if ((r = transaction_merge_jobs(m)) < 0)
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goto rollback;
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/* Third step: verify order makes sense */
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if ((r = transaction_verify_order(m, &generation)) < 0)
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goto rollback;
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/* Third step: do garbage colletion */
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transaction_collect_garbage(m);
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/* Fourth step: check whether we can actually apply this */
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if (mode == JOB_FAIL)
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if ((r = transaction_is_destructive(m, mode)) < 0)
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goto rollback;
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/* Fifth step: apply changes */
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if ((r = transaction_apply(m, mode)) < 0)
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goto rollback;
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assert(hashmap_isempty(m->transaction_jobs));
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assert(!m->transaction_anchor);
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return 0;
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rollback:
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transaction_abort(m);
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return r;
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}
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static Job* transaction_add_one_job(Manager *m, JobType type, Name *name, bool *is_new) {
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Job *j, *f;
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int r;
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assert(m);
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assert(name);
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/* Looks for an axisting prospective job and returns that. If
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* it doesn't exist it is created and added to the prospective
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* jobs list. */
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f = hashmap_get(m->transaction_jobs, name);
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for (j = f; j; j = j->transaction_next) {
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assert(j->name == name);
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if (j->type == type) {
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if (is_new)
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*is_new = false;
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return j;
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}
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}
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if (name->meta.job && name->meta.job->type == type)
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j = name->meta.job;
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else if (!(j = job_new(m, type, name)))
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return NULL;
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if ((r = hashmap_replace(m->transaction_jobs, name, j)) < 0) {
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job_free(j);
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return NULL;
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}
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j->transaction_next = f;
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if (f)
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f->transaction_prev = j;
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j->generation = 0;
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j->marker = NULL;
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j->matters_to_anchor = false;
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if (is_new)
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*is_new = true;
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return j;
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}
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void manager_transaction_delete_job(Manager *m, Job *j) {
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assert(m);
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assert(j);
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if (j->transaction_prev)
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j->transaction_prev->transaction_next = j->transaction_next;
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else if (j->transaction_next)
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hashmap_replace(m->transaction_jobs, j->name, j->transaction_next);
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else
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hashmap_remove_value(m->transaction_jobs, j->name, j);
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if (j->transaction_next)
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j->transaction_next->transaction_prev = j->transaction_prev;
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j->transaction_prev = j->transaction_next = NULL;
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while (j->subject_list)
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job_dependency_free(j->subject_list);
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while (j->object_list)
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job_dependency_free(j->object_list);
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}
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static int transaction_add_job_and_dependencies(Manager *m, JobType type, Name *name, Job *by, bool matters, bool force, Job **_ret) {
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Job *ret;
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void *state;
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Name *dep;
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int r;
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bool is_new;
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assert(m);
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assert(type < _JOB_TYPE_MAX);
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assert(name);
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/* First add the job. */
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if (!(ret = transaction_add_one_job(m, type, name, &is_new)))
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return -ENOMEM;
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/* Then, add a link to the job. */
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if (!job_dependency_new(by, ret, matters))
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return -ENOMEM;
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if (is_new) {
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/* Finally, recursively add in all dependencies. */
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if (type == JOB_START || type == JOB_RELOAD_OR_START) {
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SET_FOREACH(dep, ret->name->meta.dependencies[NAME_REQUIRES], state)
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if ((r = transaction_add_job_and_dependencies(m, JOB_START, dep, ret, true, force, NULL)) < 0)
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goto fail;
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SET_FOREACH(dep, ret->name->meta.dependencies[NAME_SOFT_REQUIRES], state)
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if ((r = transaction_add_job_and_dependencies(m, JOB_START, dep, ret, !force, force, NULL)) < 0)
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goto fail;
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SET_FOREACH(dep, ret->name->meta.dependencies[NAME_WANTS], state)
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if ((r = transaction_add_job_and_dependencies(m, JOB_START, dep, ret, false, force, NULL)) < 0)
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goto fail;
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SET_FOREACH(dep, ret->name->meta.dependencies[NAME_REQUISITE], state)
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if ((r = transaction_add_job_and_dependencies(m, JOB_VERIFY_STARTED, dep, ret, true, force, NULL)) < 0)
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goto fail;
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SET_FOREACH(dep, ret->name->meta.dependencies[NAME_SOFT_REQUISITE], state)
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if ((r = transaction_add_job_and_dependencies(m, JOB_VERIFY_STARTED, dep, ret, !force, force, NULL)) < 0)
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goto fail;
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SET_FOREACH(dep, ret->name->meta.dependencies[NAME_CONFLICTS], state)
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if ((r = transaction_add_job_and_dependencies(m, JOB_STOP, dep, ret, true, force, NULL)) < 0)
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goto fail;
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} else if (type == JOB_STOP || type == JOB_RESTART || type == JOB_TRY_RESTART) {
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SET_FOREACH(dep, ret->name->meta.dependencies[NAME_REQUIRED_BY], state)
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if ((r = transaction_add_job_and_dependencies(m, type, dep, ret, true, force, NULL)) < 0)
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goto fail;
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}
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/* JOB_VERIFY_STARTED, JOB_RELOAD require no dependency handling */
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}
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return 0;
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fail:
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return r;
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}
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int manager_add_job(Manager *m, JobType type, Name *name, JobMode mode, bool force, Job **_ret) {
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int r;
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Job *ret;
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assert(m);
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assert(type < _JOB_TYPE_MAX);
|
|
assert(name);
|
|
assert(mode < _JOB_MODE_MAX);
|
|
|
|
if ((r = transaction_add_job_and_dependencies(m, type, name, NULL, true, force, &ret))) {
|
|
transaction_abort(m);
|
|
return r;
|
|
}
|
|
|
|
if ((r = transaction_activate(m, mode)) < 0)
|
|
return r;
|
|
|
|
if (_ret)
|
|
*_ret = ret;
|
|
|
|
return 0;
|
|
}
|
|
|
|
Job *manager_get_job(Manager *m, uint32_t id) {
|
|
assert(m);
|
|
|
|
return hashmap_get(m->jobs, UINT32_TO_PTR(id));
|
|
}
|
|
|
|
Name *manager_get_name(Manager *m, const char *name) {
|
|
assert(m);
|
|
assert(name);
|
|
|
|
return hashmap_get(m->names, name);
|
|
}
|
|
|
|
static int dispatch_load_queue(Manager *m) {
|
|
Meta *meta;
|
|
|
|
assert(m);
|
|
|
|
/* Make sure we are not run recursively */
|
|
if (m->dispatching_load_queue)
|
|
return 0;
|
|
|
|
m->dispatching_load_queue = true;
|
|
|
|
/* Dispatches the load queue. Takes a name from the queue and
|
|
* tries to load its data until the queue is empty */
|
|
|
|
while ((meta = m->load_queue)) {
|
|
name_load(NAME(meta));
|
|
LIST_REMOVE(Meta, m->load_queue, meta);
|
|
}
|
|
|
|
m->dispatching_load_queue = false;
|
|
|
|
return 0;
|
|
}
|
|
|
|
int manager_load_name(Manager *m, const char *name, Name **_ret) {
|
|
Name *ret;
|
|
NameType t;
|
|
int r;
|
|
char *n;
|
|
|
|
assert(m);
|
|
assert(name);
|
|
assert(_ret);
|
|
|
|
if (!name_is_valid(name))
|
|
return -EINVAL;
|
|
|
|
/* This will load the service information files, but not actually
|
|
* start any services or anything */
|
|
|
|
if ((ret = manager_get_name(m, name)))
|
|
goto finish;
|
|
|
|
if ((t = name_type_from_string(name)) == _NAME_TYPE_INVALID)
|
|
return -EINVAL;
|
|
|
|
if (!(ret = name_new(m)))
|
|
return -ENOMEM;
|
|
|
|
ret->meta.type = t;
|
|
|
|
if (!(n = strdup(name))) {
|
|
name_free(ret);
|
|
return -ENOMEM;
|
|
}
|
|
|
|
if (set_put(ret->meta.names, n) < 0) {
|
|
name_free(ret);
|
|
free(n);
|
|
return -ENOMEM;
|
|
}
|
|
|
|
if ((r = name_link(ret)) < 0) {
|
|
name_free(ret);
|
|
return r;
|
|
}
|
|
|
|
/* At this point the new entry is created and linked. However,
|
|
* not loaded. Now load this entry and all its dependencies
|
|
* recursively */
|
|
|
|
dispatch_load_queue(m);
|
|
|
|
finish:
|
|
|
|
*_ret = ret;
|
|
return 0;
|
|
}
|
|
|
|
void manager_dump_jobs(Manager *s, FILE *f, const char *prefix) {
|
|
void *state;
|
|
Job *j;
|
|
|
|
assert(s);
|
|
assert(f);
|
|
|
|
HASHMAP_FOREACH(j, s->jobs, state)
|
|
job_dump(j, f, prefix);
|
|
}
|
|
|
|
void manager_dump_names(Manager *s, FILE *f, const char *prefix) {
|
|
void *state;
|
|
Name *n;
|
|
const char *t;
|
|
|
|
assert(s);
|
|
assert(f);
|
|
|
|
HASHMAP_FOREACH_KEY(n, t, s->names, state)
|
|
if (name_id(n) == t)
|
|
name_dump(n, f, prefix);
|
|
}
|
|
|
|
void manager_clear_jobs(Manager *m) {
|
|
Job *j;
|
|
|
|
assert(m);
|
|
|
|
transaction_abort(m);
|
|
|
|
while ((j = hashmap_first(m->jobs)))
|
|
job_free(j);
|
|
}
|