func runtime.acquirem

38 uses

	runtime (current package)
		cgocall.go#L307: 		mp := acquirem()
		malloc.go#L966: 	mp := acquirem()
		malloc.go#L1152: 			mp := acquirem()
		malloc.go#L1345: 	mp := acquirem()
		mgc.go#L1191: 	mp := acquirem()
		mgc.go#L1297: 	mp := acquirem()
		mgc.go#L1439: 	mp = acquirem()
		mgc.go#L1635: 	mp := acquirem()
		mgc.go#L1889: 	node.m.set(acquirem())
		mgc.go#L1946: 		node.m.set(acquirem())
		mheap.go#L749: 	mp := acquirem()
		mheap.go#L1687: 	mp := acquirem()
		mheap.go#L1736: 	mp := acquirem()
		mheap.go#L1797: 			mp := acquirem()
		mstats.go#L933: 	mp := acquirem()
		proc.go#L323: 	mp := acquirem()
		proc.go#L361: 	mp := acquirem()
		proc.go#L413: 	mp := acquirem() // avoid rescheduling to another P
		proc.go#L781: 	mp := acquirem() // disable preemption because it can be holding p in a local var
		proc.go#L1020: 	mp := acquirem()
		proc.go#L1154: 	mp := acquirem() // disable preemption because it can be holding p in a local var
		proc.go#L1470: 	mp := acquirem()
		proc.go#L1722: 	acquirem() // disable GC because it can be called from sysmon
		proc.go#L2139: 	mp := acquirem()
		proc.go#L2295: 	mp := acquirem()
		proc.go#L4006: 	acquirem() // disable preemption because it can be holding p in a local var
		runtime1.go#L467: func acquirem() *m {
		rwmutex.go#L38: 	acquirem()
		time.go#L267: 	mp := acquirem()
		time.go#L312: 			mp := acquirem()
		time.go#L331: 			mp := acquirem()
		time.go#L440: 			mp = acquirem()
		time.go#L449: 			mp = acquirem()
		time.go#L462: 			mp = acquirem()
		trace.go#L219: 	mp := acquirem()
		trace.go#L613: 	mp = acquirem()
		trace.go#L982: 	mp := acquirem()
		trace.go#L1137: 	mp := acquirem()