[75f3522] | 1 | //
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| 2 | // Cforall Version 1.0.0 Copyright (C) 2016 University of Waterloo
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| 3 | //
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| 4 | // The contents of this file are covered under the licence agreement in the
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| 5 | // file "LICENCE" distributed with Cforall.
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| 6 | //
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[708ae38] | 7 | // kernel/private.hfa --
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[75f3522] | 8 | //
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| 9 | // Author : Thierry Delisle
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| 10 | // Created On : Mon Feb 13 12:27:26 2017
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[6b0b624] | 11 | // Last Modified By : Peter A. Buhr
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[fd9b524] | 12 | // Last Modified On : Wed Aug 12 08:21:33 2020
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| 13 | // Update Count : 9
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[75f3522] | 14 | //
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| 15 |
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[6b0b624] | 16 | #pragma once
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[75f3522] | 17 |
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[3489ea6] | 18 | #if !defined(__cforall_thread__)
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[708ae38] | 19 | #error kernel/private.hfa should only be included in libcfathread source
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[3489ea6] | 20 | #endif
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| 21 |
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[58b6d1b] | 22 | #include "kernel.hfa"
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| 23 | #include "thread.hfa"
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[75f3522] | 24 |
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[73abe95] | 25 | #include "alarm.hfa"
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[8834751] | 26 | #include "stats.hfa"
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[fa21ac9] | 27 |
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[3489ea6] | 28 | extern "C" {
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| 29 | #if defined(CFA_HAVE_LINUX_LIBRSEQ)
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| 30 | #include <rseq/rseq.h>
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| 31 | #elif defined(CFA_HAVE_LINUX_RSEQ_H)
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[f558b5f] | 32 | #include <linux/rseq.h>
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[3489ea6] | 33 | #else
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| 34 | #ifndef _GNU_SOURCE
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[708ae38] | 35 | #error kernel/private requires gnu_source
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[3489ea6] | 36 | #endif
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| 37 | #include <sched.h>
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| 38 | #endif
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| 39 | }
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| 40 |
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[d3605f8] | 41 | // Defines whether or not we *want* to use io_uring_enter as the idle_sleep blocking call
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[f870e257] | 42 | // #define CFA_WANT_IO_URING_IDLE
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[d3605f8] | 43 |
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| 44 | // Defines whether or not we *can* use io_uring_enter as the idle_sleep blocking call
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| 45 | #if defined(CFA_WANT_IO_URING_IDLE) && defined(CFA_HAVE_LINUX_IO_URING_H)
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| 46 | #if defined(CFA_HAVE_IORING_OP_READ) || (defined(CFA_HAVE_READV) && defined(CFA_HAVE_IORING_OP_READV))
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| 47 | #define CFA_WITH_IO_URING_IDLE
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| 48 | #endif
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| 49 | #endif
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[059ad16] | 50 |
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[75f3522] | 51 | //-----------------------------------------------------------------------------
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| 52 | // Scheduler
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[1c273d0] | 53 | extern "C" {
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[2026bb6] | 54 | void disable_interrupts() OPTIONAL_THREAD;
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[a3821fa] | 55 | void enable_interrupts( bool poll = true );
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[1c273d0] | 56 | }
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| 57 |
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[24e321c] | 58 | void schedule_thread$( thread$ *, unpark_hint hint ) __attribute__((nonnull (1)));
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[75f3522] | 59 |
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[8fc652e0] | 60 | extern bool __preemption_enabled();
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| 61 |
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[13fdf86] | 62 | enum {
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| 63 | PREEMPT_NORMAL = 0,
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| 64 | PREEMPT_TERMINATE = 1,
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| 65 | PREEMPT_IO = 2,
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| 66 | };
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| 67 |
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[7d0ebd0] | 68 | static inline void __disable_interrupts_checked() {
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| 69 | /* paranoid */ verify( __preemption_enabled() );
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| 70 | disable_interrupts();
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| 71 | /* paranoid */ verify( ! __preemption_enabled() );
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| 72 | }
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| 73 |
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| 74 | static inline void __enable_interrupts_checked( bool poll = true ) {
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| 75 | /* paranoid */ verify( ! __preemption_enabled() );
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| 76 | enable_interrupts( poll );
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| 77 | /* paranoid */ verify( __preemption_enabled() );
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| 78 | }
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| 79 |
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[5afb49a] | 80 | //release/wake-up the following resources
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[e84ab3d] | 81 | void __thread_finish( thread$ * thrd );
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[db6f06a] | 82 |
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[3489ea6] | 83 | //-----------------------------------------------------------------------------
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| 84 | // Hardware
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| 85 |
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| 86 | #if defined(CFA_HAVE_LINUX_LIBRSEQ)
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| 87 | // No data needed
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| 88 | #elif defined(CFA_HAVE_LINUX_RSEQ_H)
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| 89 | extern "Cforall" {
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[1bcbf02] | 90 | extern __attribute__((aligned(64))) __thread volatile struct rseq __cfaabi_rseq;
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[3489ea6] | 91 | }
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| 92 | #else
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| 93 | // No data needed
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| 94 | #endif
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| 95 |
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| 96 | static inline int __kernel_getcpu() {
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| 97 | /* paranoid */ verify( ! __preemption_enabled() );
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| 98 | #if defined(CFA_HAVE_LINUX_LIBRSEQ)
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[f558b5f] | 99 | return rseq_current_cpu();
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[3489ea6] | 100 | #elif defined(CFA_HAVE_LINUX_RSEQ_H)
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[f558b5f] | 101 | int r = __cfaabi_rseq.cpu_id;
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| 102 | /* paranoid */ verify( r >= 0 );
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| 103 | return r;
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[3489ea6] | 104 | #else
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| 105 | return sched_getcpu();
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| 106 | #endif
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| 107 | }
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| 108 |
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[75f3522] | 109 | //-----------------------------------------------------------------------------
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| 110 | // Processor
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[c18bf9e] | 111 | void main(processorCtx_t &);
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| 112 | static inline coroutine$* get_coroutine(processorCtx_t & this) { return &this.self; }
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[85b1deb] | 113 |
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[8c50aed] | 114 | void * __create_pthread( pthread_t *, void * (*)(void *), void * );
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[bfcf6b9] | 115 | void __destroy_pthread( pthread_t pthread, void * stack, void ** retval );
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[1805b1b] | 116 |
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[6502a2b] | 117 | extern cluster * mainCluster;
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| 118 |
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[75f3522] | 119 | //-----------------------------------------------------------------------------
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| 120 | // Threads
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| 121 | extern "C" {
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[c7a900a] | 122 | void __cfactx_invoke_thread(void (*main)(void *), void * this);
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[75f3522] | 123 | }
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| 124 |
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[f7d6bb0] | 125 | __cfaabi_dbg_debug_do(
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[e84ab3d] | 126 | extern void __cfaabi_dbg_thread_register ( thread$ * thrd );
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| 127 | extern void __cfaabi_dbg_thread_unregister( thread$ * thrd );
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[f7d6bb0] | 128 | )
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| 129 |
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[6a77224] | 130 | #define TICKET_BLOCKED (-1) // thread is blocked
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| 131 | #define TICKET_RUNNING ( 0) // thread is running
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| 132 | #define TICKET_UNBLOCK ( 1) // thread should ignore next block
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| 133 |
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[969b3fe] | 134 | //-----------------------------------------------------------------------------
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| 135 | // Utils
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[e84ab3d] | 136 | void doregister( struct cluster * cltr, struct thread$ & thrd );
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| 137 | void unregister( struct cluster * cltr, struct thread$ & thrd );
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[de94a60] | 138 |
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[f00b26d4] | 139 | //-----------------------------------------------------------------------------
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| 140 | // I/O
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[8bee858] | 141 | io_arbiter$ * create(void);
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| 142 | void destroy(io_arbiter$ *);
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[f00b26d4] | 143 |
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[7768b8d] | 144 | //=======================================================================
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| 145 | // Cluster lock API
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| 146 | //=======================================================================
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| 147 | // Lock-Free registering/unregistering of threads
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| 148 | // Register a processor to a given cluster and get its unique id in return
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[c993b15] | 149 | unsigned register_proc_id( void );
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[7768b8d] | 150 |
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| 151 | // Unregister a processor from a given cluster using its id, getting back the original pointer
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[c993b15] | 152 | void unregister_proc_id( unsigned );
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[7768b8d] | 153 |
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| 154 | //=======================================================================
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| 155 | // Reader-writer lock implementation
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| 156 | // Concurrent with doregister/unregister,
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| 157 | // i.e., threads can be added at any point during or between the entry/exit
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[dca5802] | 158 |
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| 159 | //-----------------------------------------------------------------------
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| 160 | // simple spinlock underlying the RWLock
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| 161 | // Blocking acquire
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[7768b8d] | 162 | static inline void __atomic_acquire(volatile bool * ll) {
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[2284d20] | 163 | /* paranoid */ verify( ! __preemption_enabled() );
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| 164 | /* paranoid */ verify(ll);
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| 165 |
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[7768b8d] | 166 | while( __builtin_expect(__atomic_exchange_n(ll, (bool)true, __ATOMIC_SEQ_CST), false) ) {
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| 167 | while(__atomic_load_n(ll, (int)__ATOMIC_RELAXED))
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[fd9b524] | 168 | Pause();
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[7768b8d] | 169 | }
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| 170 | /* paranoid */ verify(*ll);
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[2284d20] | 171 | /* paranoid */ verify( ! __preemption_enabled() );
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[7768b8d] | 172 | }
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| 173 |
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[dca5802] | 174 | // Non-Blocking acquire
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[7768b8d] | 175 | static inline bool __atomic_try_acquire(volatile bool * ll) {
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[2284d20] | 176 | /* paranoid */ verify( ! __preemption_enabled() );
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| 177 | /* paranoid */ verify(ll);
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| 178 |
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[b798713] | 179 | return !__atomic_exchange_n(ll, (bool)true, __ATOMIC_SEQ_CST);
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[7768b8d] | 180 | }
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| 181 |
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[dca5802] | 182 | // Release
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[7768b8d] | 183 | static inline void __atomic_unlock(volatile bool * ll) {
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[2284d20] | 184 | /* paranoid */ verify( ! __preemption_enabled() );
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| 185 | /* paranoid */ verify(ll);
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[7768b8d] | 186 | /* paranoid */ verify(*ll);
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| 187 | __atomic_store_n(ll, (bool)false, __ATOMIC_RELEASE);
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| 188 | }
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| 189 |
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[b388ee81] | 190 | //-----------------------------------------------------------------------
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| 191 | // Reader-Writer lock protecting the ready-queues
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| 192 | // while this lock is mostly generic some aspects
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| 193 | // have been hard-coded to for the ready-queue for
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| 194 | // simplicity and performance
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[741e22c] | 195 | union __attribute__((aligned(64))) __scheduler_RWLock_t {
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| 196 | struct {
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[cd3fc46] | 197 | __attribute__((aligned(64))) char padding;
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| 198 |
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[741e22c] | 199 | // total cachelines allocated
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[cd3fc46] | 200 | __attribute__((aligned(64))) unsigned int max;
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[b388ee81] | 201 |
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[741e22c] | 202 | // cachelines currently in use
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| 203 | volatile unsigned int alloc;
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[b388ee81] | 204 |
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[741e22c] | 205 | // cachelines ready to itereate over
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| 206 | // (!= to alloc when thread is in second half of doregister)
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| 207 | volatile unsigned int ready;
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[b388ee81] | 208 |
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[741e22c] | 209 | // writer lock
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| 210 | volatile bool write_lock;
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[b388ee81] | 211 |
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[741e22c] | 212 | // data pointer
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| 213 | volatile bool * volatile * data;
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| 214 | } lock;
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| 215 | char pad[192];
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[b388ee81] | 216 | };
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| 217 |
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| 218 | void ?{}(__scheduler_RWLock_t & this);
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| 219 | void ^?{}(__scheduler_RWLock_t & this);
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| 220 |
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[cd3fc46] | 221 | extern __scheduler_RWLock_t __scheduler_lock;
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[b388ee81] | 222 |
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[7768b8d] | 223 | //-----------------------------------------------------------------------
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| 224 | // Reader side : acquire when using the ready queue to schedule but not
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| 225 | // creating/destroying queues
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[cd3fc46] | 226 | static inline void ready_schedule_lock(void) with(__scheduler_lock.lock) {
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[8fc652e0] | 227 | /* paranoid */ verify( ! __preemption_enabled() );
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[c993b15] | 228 | /* paranoid */ verify( ! kernelTLS().in_sched_lock );
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| 229 | /* paranoid */ verify( data[kernelTLS().sched_id] == &kernelTLS().sched_lock );
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| 230 | /* paranoid */ verify( !kernelTLS().this_processor || kernelTLS().this_processor->unique_id == kernelTLS().sched_id );
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[7768b8d] | 231 |
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| 232 | // Step 1 : make sure no writer are in the middle of the critical section
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[c993b15] | 233 | while(__atomic_load_n(&write_lock, (int)__ATOMIC_RELAXED))
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[fd9b524] | 234 | Pause();
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[7768b8d] | 235 |
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| 236 | // Fence needed because we don't want to start trying to acquire the lock
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| 237 | // before we read a false.
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| 238 | // Not needed on x86
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| 239 | // std::atomic_thread_fence(std::memory_order_seq_cst);
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| 240 |
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| 241 | // Step 2 : acquire our local lock
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[c993b15] | 242 | __atomic_acquire( &kernelTLS().sched_lock );
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| 243 | /*paranoid*/ verify(kernelTLS().sched_lock);
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[64a7146] | 244 |
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| 245 | #ifdef __CFA_WITH_VERIFY__
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| 246 | // Debug, check if this is owned for reading
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[c993b15] | 247 | kernelTLS().in_sched_lock = true;
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[64a7146] | 248 | #endif
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[7768b8d] | 249 | }
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| 250 |
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[cd3fc46] | 251 | static inline void ready_schedule_unlock(void) with(__scheduler_lock.lock) {
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[8fc652e0] | 252 | /* paranoid */ verify( ! __preemption_enabled() );
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[c993b15] | 253 | /* paranoid */ verify( data[kernelTLS().sched_id] == &kernelTLS().sched_lock );
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| 254 | /* paranoid */ verify( !kernelTLS().this_processor || kernelTLS().this_processor->unique_id == kernelTLS().sched_id );
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| 255 | /* paranoid */ verify( kernelTLS().sched_lock );
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| 256 | /* paranoid */ verify( kernelTLS().in_sched_lock );
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[64a7146] | 257 | #ifdef __CFA_WITH_VERIFY__
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| 258 | // Debug, check if this is owned for reading
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[c993b15] | 259 | kernelTLS().in_sched_lock = false;
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[64a7146] | 260 | #endif
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[c993b15] | 261 | __atomic_unlock(&kernelTLS().sched_lock);
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[7768b8d] | 262 | }
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| 263 |
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[64a7146] | 264 | #ifdef __CFA_WITH_VERIFY__
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[e873838] | 265 | static inline bool ready_schedule_islocked(void) {
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[8fc652e0] | 266 | /* paranoid */ verify( ! __preemption_enabled() );
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[c993b15] | 267 | /* paranoid */ verify( (!kernelTLS().in_sched_lock) || kernelTLS().sched_lock );
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| 268 | return kernelTLS().sched_lock;
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[64a7146] | 269 | }
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| 270 |
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| 271 | static inline bool ready_mutate_islocked() {
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[cd3fc46] | 272 | return __scheduler_lock.lock.write_lock;
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[64a7146] | 273 | }
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| 274 | #endif
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| 275 |
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[7768b8d] | 276 | //-----------------------------------------------------------------------
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| 277 | // Writer side : acquire when changing the ready queue, e.g. adding more
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| 278 | // queues or removing them.
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[b388ee81] | 279 | uint_fast32_t ready_mutate_lock( void );
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[7768b8d] | 280 |
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[b388ee81] | 281 | void ready_mutate_unlock( uint_fast32_t /* value returned by lock */ );
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[7768b8d] | 282 |
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[a33c113] | 283 | //-----------------------------------------------------------------------
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| 284 | // Lock-Free registering/unregistering of threads
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| 285 | // Register a processor to a given cluster and get its unique id in return
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| 286 | // For convenience, also acquires the lock
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[c993b15] | 287 | static inline [unsigned, uint_fast32_t] ready_mutate_register() {
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| 288 | unsigned id = register_proc_id();
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| 289 | uint_fast32_t last = ready_mutate_lock();
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| 290 | return [id, last];
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[a33c113] | 291 | }
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| 292 |
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| 293 | // Unregister a processor from a given cluster using its id, getting back the original pointer
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| 294 | // assumes the lock is acquired
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[c993b15] | 295 | static inline void ready_mutate_unregister( unsigned id, uint_fast32_t last_s ) {
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[a33c113] | 296 | ready_mutate_unlock( last_s );
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[c993b15] | 297 | unregister_proc_id( id );
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[a33c113] | 298 | }
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| 299 |
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[a7504db5] | 300 | //-----------------------------------------------------------------------
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| 301 | // Cluster idle lock/unlock
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[6a9b12b] | 302 | static inline void lock(__cluster_proc_list & this) {
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[a7504db5] | 303 | /* paranoid */ verify( ! __preemption_enabled() );
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| 304 |
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| 305 | // Start by locking the global RWlock so that we know no-one is
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| 306 | // adding/removing processors while we mess with the idle lock
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| 307 | ready_schedule_lock();
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| 308 |
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[a633f6f] | 309 | lock( this.lock __cfaabi_dbg_ctx2 );
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[a7504db5] | 310 |
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| 311 | /* paranoid */ verify( ! __preemption_enabled() );
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| 312 | }
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| 313 |
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[5f5a729] | 314 | static inline bool try_lock(__cluster_proc_list & this) {
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| 315 | /* paranoid */ verify( ! __preemption_enabled() );
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| 316 |
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| 317 | // Start by locking the global RWlock so that we know no-one is
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| 318 | // adding/removing processors while we mess with the idle lock
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| 319 | ready_schedule_lock();
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| 320 |
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[a633f6f] | 321 | if(try_lock( this.lock __cfaabi_dbg_ctx2 )) {
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[5f5a729] | 322 | // success
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| 323 | /* paranoid */ verify( ! __preemption_enabled() );
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| 324 | return true;
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| 325 | }
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| 326 |
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| 327 | // failed to lock
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| 328 | ready_schedule_unlock();
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| 329 |
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| 330 | /* paranoid */ verify( ! __preemption_enabled() );
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| 331 | return false;
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| 332 | }
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| 333 |
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[6a9b12b] | 334 | static inline void unlock(__cluster_proc_list & this) {
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[a7504db5] | 335 | /* paranoid */ verify( ! __preemption_enabled() );
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| 336 |
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[a633f6f] | 337 | unlock(this.lock);
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[a7504db5] | 338 |
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| 339 | // Release the global lock, which we acquired when locking
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| 340 | ready_schedule_unlock();
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| 341 |
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| 342 | /* paranoid */ verify( ! __preemption_enabled() );
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| 343 | }
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| 344 |
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[b798713] | 345 | //=======================================================================
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| 346 | // Ready-Queue API
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[dca5802] | 347 | //-----------------------------------------------------------------------
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| 348 | // push thread onto a ready queue for a cluster
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| 349 | // returns true if the list was previously empty, false otherwise
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[24e321c] | 350 | __attribute__((hot)) void push(struct cluster * cltr, struct thread$ * thrd, unpark_hint hint);
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[dca5802] | 351 |
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| 352 | //-----------------------------------------------------------------------
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[fc59df78] | 353 | // pop thread from the local queues of a cluster
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[dca5802] | 354 | // returns 0p if empty
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[1eb239e4] | 355 | // May return 0p spuriously
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[e84ab3d] | 356 | __attribute__((hot)) struct thread$ * pop_fast(struct cluster * cltr);
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[dca5802] | 357 |
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[1eb239e4] | 358 | //-----------------------------------------------------------------------
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[fc59df78] | 359 | // pop thread from any ready queue of a cluster
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[1eb239e4] | 360 | // returns 0p if empty
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[fc59df78] | 361 | // May return 0p spuriously
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[e84ab3d] | 362 | __attribute__((hot)) struct thread$ * pop_slow(struct cluster * cltr);
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[1eb239e4] | 363 |
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[fc59df78] | 364 | //-----------------------------------------------------------------------
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| 365 | // search all ready queues of a cluster for any thread
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| 366 | // returns 0p if empty
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| 367 | // guaranteed to find any threads added before this call
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[e84ab3d] | 368 | __attribute__((hot)) struct thread$ * pop_search(struct cluster * cltr);
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[fc59df78] | 369 |
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[24e321c] | 370 | //-----------------------------------------------------------------------
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| 371 | // get preferred ready for new thread
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| 372 | unsigned ready_queue_new_preferred();
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| 373 |
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[dca5802] | 374 | //-----------------------------------------------------------------------
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| 375 | // Increase the width of the ready queue (number of lanes) by 4
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[a017ee7] | 376 | void ready_queue_grow (struct cluster * cltr);
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[dca5802] | 377 |
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| 378 | //-----------------------------------------------------------------------
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| 379 | // Decrease the width of the ready queue (number of lanes) by 4
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[a017ee7] | 380 | void ready_queue_shrink(struct cluster * cltr);
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[b798713] | 381 |
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[884f3f67] | 382 | //-----------------------------------------------------------------------
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| 383 | // Decrease the width of the ready queue (number of lanes) by 4
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| 384 | void ready_queue_close(struct cluster * cltr);
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| 385 |
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[75f3522] | 386 | // Local Variables: //
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| 387 | // mode: c //
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| 388 | // tab-width: 4 //
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[4aa2fb2] | 389 | // End: //
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