| /src/tests/kernel/ |
| t_zombie.c | 130 pid_t child1, child2, pid; local 132 child1 = atf_utils_fork(); 133 ATF_REQUIRE(child1 != -1); 134 if (child1 == 0) { 142 await_zombie(child1); 152 kill(child1, sig); 156 ASSERT(check_zombie(child1)); 169 /* Assert that child1 is still a zombie after collecting child2 */ 170 ATF_REQUIRE(check_zombie(child1)); 180 kill(child1, sig) [all...] |
| t_zombie.c | 130 pid_t child1, child2, pid; local 132 child1 = atf_utils_fork(); 133 ATF_REQUIRE(child1 != -1); 134 if (child1 == 0) { 142 await_zombie(child1); 152 kill(child1, sig); 156 ASSERT(check_zombie(child1)); 169 /* Assert that child1 is still a zombie after collecting child2 */ 170 ATF_REQUIRE(check_zombie(child1)); 180 kill(child1, sig) [all...] |
| t_zombie.c | 130 pid_t child1, child2, pid; local 132 child1 = atf_utils_fork(); 133 ATF_REQUIRE(child1 != -1); 134 if (child1 == 0) { 142 await_zombie(child1); 152 kill(child1, sig); 156 ASSERT(check_zombie(child1)); 169 /* Assert that child1 is still a zombie after collecting child2 */ 170 ATF_REQUIRE(check_zombie(child1)); 180 kill(child1, sig) [all...] |
| t_zombie.c | 130 pid_t child1, child2, pid; local 132 child1 = atf_utils_fork(); 133 ATF_REQUIRE(child1 != -1); 134 if (child1 == 0) { 142 await_zombie(child1); 152 kill(child1, sig); 156 ASSERT(check_zombie(child1)); 169 /* Assert that child1 is still a zombie after collecting child2 */ 170 ATF_REQUIRE(check_zombie(child1)); 180 kill(child1, sig) [all...] |
| /src/tests/lib/libc/sys/ |
| t_ptrace_topology_wait.h | 40 pid_t child1, child2, wpid; local 49 SYSCALL_REQUIRE((child1 = fork()) != -1); 50 if (child1 == 0) { 58 CHILD_FROM_PARENT("exit child1", parent_child, msg); 71 DPRINTF("Parent process PID=%d, child1's PID=%d\n", getpid(), child1); 75 wpid = TWAIT_GENERIC(child1, &status, WEXITED), child1); 79 DPRINTF("Notify that child1 is dead\n"); 80 PARENT_TO_CHILD("exit child1", parent_child, msg) [all...] |
| t_ptrace_topology_wait.h | 40 pid_t child1, child2, wpid; local 49 SYSCALL_REQUIRE((child1 = fork()) != -1); 50 if (child1 == 0) { 58 CHILD_FROM_PARENT("exit child1", parent_child, msg); 71 DPRINTF("Parent process PID=%d, child1's PID=%d\n", getpid(), child1); 75 wpid = TWAIT_GENERIC(child1, &status, WEXITED), child1); 79 DPRINTF("Notify that child1 is dead\n"); 80 PARENT_TO_CHILD("exit child1", parent_child, msg) [all...] |
| t_ptrace_topology_wait.h | 40 pid_t child1, child2, wpid; local 49 SYSCALL_REQUIRE((child1 = fork()) != -1); 50 if (child1 == 0) { 58 CHILD_FROM_PARENT("exit child1", parent_child, msg); 71 DPRINTF("Parent process PID=%d, child1's PID=%d\n", getpid(), child1); 75 wpid = TWAIT_GENERIC(child1, &status, WEXITED), child1); 79 DPRINTF("Notify that child1 is dead\n"); 80 PARENT_TO_CHILD("exit child1", parent_child, msg) [all...] |
| t_ptrace_topology_wait.h | 40 pid_t child1, child2, wpid; local 49 SYSCALL_REQUIRE((child1 = fork()) != -1); 50 if (child1 == 0) { 58 CHILD_FROM_PARENT("exit child1", parent_child, msg); 71 DPRINTF("Parent process PID=%d, child1's PID=%d\n", getpid(), child1); 75 wpid = TWAIT_GENERIC(child1, &status, WEXITED), child1); 79 DPRINTF("Notify that child1 is dead\n"); 80 PARENT_TO_CHILD("exit child1", parent_child, msg) [all...] |
| t_poll.c | 55 child1(void) function 63 (void)printf("child1 exit\n"); 119 child1();
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| t_poll.c | 55 child1(void) function 63 (void)printf("child1 exit\n"); 119 child1();
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| t_poll.c | 55 child1(void) function 63 (void)printf("child1 exit\n"); 119 child1();
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| t_poll.c | 55 child1(void) function 63 (void)printf("child1 exit\n"); 119 child1();
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| /src/sys/external/bsd/drm2/dist/drm/i915/gvt/ |
| opregion.c | 133 struct efp_child_device_config child1; member in struct:vbt 190 v->child1.handle = DEVICE_TYPE_EFP2; 191 v->child1.device_type = DEVICE_TYPE_DP; 192 v->child1.dvo_port = DVO_PORT_DPB; 193 v->child1.aux_channel = DP_AUX_B; 194 v->child1.dp_compat = true; 195 v->child1.integrated_encoder = true;
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| opregion.c | 133 struct efp_child_device_config child1; member in struct:vbt 190 v->child1.handle = DEVICE_TYPE_EFP2; 191 v->child1.device_type = DEVICE_TYPE_DP; 192 v->child1.dvo_port = DVO_PORT_DPB; 193 v->child1.aux_channel = DP_AUX_B; 194 v->child1.dp_compat = true; 195 v->child1.integrated_encoder = true;
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| opregion.c | 133 struct efp_child_device_config child1; member in struct:vbt 190 v->child1.handle = DEVICE_TYPE_EFP2; 191 v->child1.device_type = DEVICE_TYPE_DP; 192 v->child1.dvo_port = DVO_PORT_DPB; 193 v->child1.aux_channel = DP_AUX_B; 194 v->child1.dp_compat = true; 195 v->child1.integrated_encoder = true;
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| opregion.c | 133 struct efp_child_device_config child1; member in struct:vbt 190 v->child1.handle = DEVICE_TYPE_EFP2; 191 v->child1.device_type = DEVICE_TYPE_DP; 192 v->child1.dvo_port = DVO_PORT_DPB; 193 v->child1.aux_channel = DP_AUX_B; 194 v->child1.dp_compat = true; 195 v->child1.integrated_encoder = true;
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| /src/external/mit/isl/dist/ |
| isl_schedule_tree.c | 693 isl_schedule_tree *child1, *child2; local 695 child1 = isl_schedule_tree_get_child(tree1, i); 697 equal = isl_schedule_tree_plain_is_equal(child1, child2); 698 isl_schedule_tree_free(child1);
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| isl_schedule_tree.c | 693 isl_schedule_tree *child1, *child2; local 695 child1 = isl_schedule_tree_get_child(tree1, i); 697 equal = isl_schedule_tree_plain_is_equal(child1, child2); 698 isl_schedule_tree_free(child1);
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| isl_schedule_tree.c | 693 isl_schedule_tree *child1, *child2; local 695 child1 = isl_schedule_tree_get_child(tree1, i); 697 equal = isl_schedule_tree_plain_is_equal(child1, child2); 698 isl_schedule_tree_free(child1);
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| isl_schedule_tree.c | 693 isl_schedule_tree *child1, *child2; local 695 child1 = isl_schedule_tree_get_child(tree1, i); 697 equal = isl_schedule_tree_plain_is_equal(child1, child2); 698 isl_schedule_tree_free(child1);
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| /src/external/gpl3/gcc.old/dist/gcc/ |
| tree-vect-slp.cc | 1596 slp_tree child1 = new _slp_tree; local 1597 SLP_TREE_DEF_TYPE (child1) = vect_internal_def; 1598 SLP_TREE_VECTYPE (child1) = vectype; 1599 SLP_TREE_LANES (child1) = group_size; 1600 SLP_TREE_CHILDREN (child1).create (2); 1601 SLP_TREE_CHILDREN (child1).quick_push (op0); 1602 SLP_TREE_CHILDREN (child1).quick_push (op1); 1603 SLP_TREE_REPRESENTATIVE (child1) = oper1; 1623 SLP_TREE_CHILDREN (perm).quick_push (child1);
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| tree-vect-slp.cc | 1596 slp_tree child1 = new _slp_tree; local 1597 SLP_TREE_DEF_TYPE (child1) = vect_internal_def; 1598 SLP_TREE_VECTYPE (child1) = vectype; 1599 SLP_TREE_LANES (child1) = group_size; 1600 SLP_TREE_CHILDREN (child1).create (2); 1601 SLP_TREE_CHILDREN (child1).quick_push (op0); 1602 SLP_TREE_CHILDREN (child1).quick_push (op1); 1603 SLP_TREE_REPRESENTATIVE (child1) = oper1; 1623 SLP_TREE_CHILDREN (perm).quick_push (child1);
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| tree-vect-slp.cc | 1596 slp_tree child1 = new _slp_tree; local 1597 SLP_TREE_DEF_TYPE (child1) = vect_internal_def; 1598 SLP_TREE_VECTYPE (child1) = vectype; 1599 SLP_TREE_LANES (child1) = group_size; 1600 SLP_TREE_CHILDREN (child1).create (2); 1601 SLP_TREE_CHILDREN (child1).quick_push (op0); 1602 SLP_TREE_CHILDREN (child1).quick_push (op1); 1603 SLP_TREE_REPRESENTATIVE (child1) = oper1; 1623 SLP_TREE_CHILDREN (perm).quick_push (child1);
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| tree-vect-slp.cc | 1596 slp_tree child1 = new _slp_tree; local 1597 SLP_TREE_DEF_TYPE (child1) = vect_internal_def; 1598 SLP_TREE_VECTYPE (child1) = vectype; 1599 SLP_TREE_LANES (child1) = group_size; 1600 SLP_TREE_CHILDREN (child1).create (2); 1601 SLP_TREE_CHILDREN (child1).quick_push (op0); 1602 SLP_TREE_CHILDREN (child1).quick_push (op1); 1603 SLP_TREE_REPRESENTATIVE (child1) = oper1; 1623 SLP_TREE_CHILDREN (perm).quick_push (child1);
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| /src/external/gpl3/gcc/dist/gcc/ |
| tree-vect-slp.cc | 1797 slp_tree child1 = new _slp_tree; local 1798 SLP_TREE_DEF_TYPE (child1) = vect_internal_def; 1799 SLP_TREE_VECTYPE (child1) = vectype; 1800 SLP_TREE_LANES (child1) = group_size; 1801 SLP_TREE_CHILDREN (child1).create (2); 1802 SLP_TREE_CHILDREN (child1).quick_push (op0); 1803 SLP_TREE_CHILDREN (child1).quick_push (op1); 1804 SLP_TREE_REPRESENTATIVE (child1) = oper1; 1824 SLP_TREE_CHILDREN (perm).quick_push (child1);
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