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drm.h
(25.25 KB)
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drmP.h
(60.47 KB)
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drm_agpsupport.c
(12.05 KB)
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drm_atomic.h
(3.48 KB)
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drm_auth.c
(6.12 KB)
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drm_buffer.c
(5.02 KB)
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drm_buffer.h
(4.55 KB)
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drm_bufs.c
(43.77 KB)
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drm_context.c
(12.07 KB)
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drm_core.h
(1.48 KB)
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drm_crtc.c
(97.29 KB)
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drm_crtc.h
(38.9 KB)
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drm_crtc_helper.c
(31.32 KB)
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drm_crtc_helper.h
(6.37 KB)
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drm_dma.c
(4.04 KB)
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drm_dp_helper.c
(4.5 KB)
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drm_dp_helper.h
(12.35 KB)
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drm_dp_iic_helper.c
(6.54 KB)
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drm_drv.c
(17.48 KB)
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drm_edid.c
(51.99 KB)
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drm_edid.h
(7.55 KB)
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drm_edid_modes.h
(33.57 KB)
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drm_fb_helper.c
(38.84 KB)
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drm_fb_helper.h
(4.21 KB)
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drm_fixed.h
(2.23 KB)
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drm_fops.c
(15.14 KB)
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drm_fourcc.h
(7.93 KB)
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drm_gem.c
(11.57 KB)
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drm_gem_names.c
(5.59 KB)
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drm_gem_names.h
(2.46 KB)
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drm_global.c
(3.16 KB)
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drm_global.h
(2.01 KB)
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drm_hashtab.c
(4.94 KB)
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drm_hashtab.h
(2.57 KB)
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drm_ioc32.c
(21.88 KB)
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drm_ioctl.c
(8.81 KB)
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drm_irq.c
(41.03 KB)
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drm_linux_list.h
(7.88 KB)
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drm_linux_list_sort.c
(2.53 KB)
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drm_lock.c
(10.27 KB)
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drm_mem_util.h
(1.77 KB)
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drm_memory.c
(3.78 KB)
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drm_mm.c
(19.2 KB)
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drm_mm.h
(8.52 KB)
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drm_mode.h
(12.16 KB)
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drm_modes.c
(33.66 KB)
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drm_os_freebsd.c
(11.36 KB)
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drm_os_freebsd.h
(17.72 KB)
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drm_pci.c
(12.35 KB)
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drm_pciids.h
(70.22 KB)
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drm_platform.c
(4.58 KB)
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drm_sarea.h
(2.64 KB)
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drm_scatter.c
(3.58 KB)
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drm_stub.c
(12.1 KB)
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drm_sysctl.c
(9.99 KB)
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drm_vm.c
(4.18 KB)
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ttm
Editing: drm_lock.c
/** * \file drm_lock.c * IOCTLs for locking * * \author Rickard E. (Rik) Faith <faith@valinux.com> * \author Gareth Hughes <gareth@valinux.com> */ /* * Created: Tue Feb 2 08:37:54 1999 by faith@valinux.com * * Copyright 1999 Precision Insight, Inc., Cedar Park, Texas. * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California. * All Rights Reserved. * * Permission is hereby granted, free of charge, to any person obtaining a * copy of this software and associated documentation files (the "Software"), * to deal in the Software without restriction, including without limitation * the rights to use, copy, modify, merge, publish, distribute, sublicense, * and/or sell copies of the Software, and to permit persons to whom the * Software is furnished to do so, subject to the following conditions: * * The above copyright notice and this permission notice (including the next * paragraph) shall be included in all copies or substantial portions of the * Software. * * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL * VA LINUX SYSTEMS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR * OTHER DEALINGS IN THE SOFTWARE. */ #include <sys/cdefs.h> __FBSDID("$FreeBSD$"); #include <dev/drm2/drmP.h> #if defined(__linux__) static int drm_notifier(void *priv); #endif static int drm_lock_take(struct drm_lock_data *lock_data, unsigned int context); /** * Lock ioctl. * * \param inode device inode. * \param file_priv DRM file private. * \param cmd command. * \param arg user argument, pointing to a drm_lock structure. * \return zero on success or negative number on failure. * * Add the current task to the lock wait queue, and attempt to take to lock. */ int drm_lock(struct drm_device *dev, void *data, struct drm_file *file_priv) { struct drm_lock *lock = data; struct drm_master *master = file_priv->master; int ret = 0; ++file_priv->lock_count; if (lock->context == DRM_KERNEL_CONTEXT) { DRM_ERROR("Process %d using kernel context %d\n", DRM_CURRENTPID, lock->context); return -EINVAL; } DRM_DEBUG("%d (pid %d) requests lock (0x%08x), flags = 0x%08x\n", lock->context, DRM_CURRENTPID, master->lock.hw_lock->lock, lock->flags); mtx_lock(&master->lock.spinlock); master->lock.user_waiters++; mtx_unlock(&master->lock.spinlock); for (;;) { #if defined(__linux__) if (!master->lock.hw_lock) { /* Device has been unregistered */ send_sig(SIGTERM, current, 0); ret = -EINTR; break; } #endif if (drm_lock_take(&master->lock, lock->context)) { master->lock.file_priv = file_priv; master->lock.lock_time = jiffies; atomic_inc(&dev->counts[_DRM_STAT_LOCKS]); break; /* Got lock */ } /* Contention */ DRM_UNLOCK_ASSERT(dev); ret = -sx_sleep(&master->lock.lock_queue, &drm_global_mutex, PCATCH, "drmlk2", 0); if (ret == -ERESTART) ret = -ERESTARTSYS; if (ret != 0) break; } mtx_lock(&master->lock.spinlock); master->lock.user_waiters--; mtx_unlock(&master->lock.spinlock); DRM_DEBUG("%d %s\n", lock->context, ret ? "interrupted" : "has lock"); if (ret) return ret; #if defined(__linux__) /* don't set the block all signals on the master process for now * really probably not the correct answer but lets us debug xkb * xserver for now */ if (!file_priv->is_master) { sigemptyset(&dev->sigmask); sigaddset(&dev->sigmask, SIGSTOP); sigaddset(&dev->sigmask, SIGTSTP); sigaddset(&dev->sigmask, SIGTTIN); sigaddset(&dev->sigmask, SIGTTOU); dev->sigdata.context = lock->context; dev->sigdata.lock = master->lock.hw_lock; block_all_signals(drm_notifier, &dev->sigdata, &dev->sigmask); } #endif if (dev->driver->dma_quiescent && (lock->flags & _DRM_LOCK_QUIESCENT)) { if (dev->driver->dma_quiescent(dev)) { DRM_DEBUG("%d waiting for DMA quiescent\n", lock->context); return -EBUSY; } } return 0; } /** * Unlock ioctl. * * \param inode device inode. * \param file_priv DRM file private. * \param cmd command. * \param arg user argument, pointing to a drm_lock structure. * \return zero on success or negative number on failure. * * Transfer and free the lock. */ int drm_unlock(struct drm_device *dev, void *data, struct drm_file *file_priv) { struct drm_lock *lock = data; struct drm_master *master = file_priv->master; if (lock->context == DRM_KERNEL_CONTEXT) { DRM_ERROR("Process %d using kernel context %d\n", DRM_CURRENTPID, lock->context); return -EINVAL; } atomic_inc(&dev->counts[_DRM_STAT_UNLOCKS]); if (drm_lock_free(&master->lock, lock->context)) { /* FIXME: Should really bail out here. */ } #if defined(__linux__) unblock_all_signals(); #endif return 0; } /** * Take the heavyweight lock. * * \param lock lock pointer. * \param context locking context. * \return one if the lock is held, or zero otherwise. * * Attempt to mark the lock as held by the given context, via the \p cmpxchg instruction. */ static int drm_lock_take(struct drm_lock_data *lock_data, unsigned int context) { unsigned int old, new, prev; volatile unsigned int *lock = &lock_data->hw_lock->lock; mtx_lock(&lock_data->spinlock); do { old = *lock; if (old & _DRM_LOCK_HELD) new = old | _DRM_LOCK_CONT; else { new = context | _DRM_LOCK_HELD | ((lock_data->user_waiters + lock_data->kernel_waiters > 1) ? _DRM_LOCK_CONT : 0); } prev = cmpxchg(lock, old, new); } while (prev != old); mtx_unlock(&lock_data->spinlock); if (_DRM_LOCKING_CONTEXT(old) == context) { if (old & _DRM_LOCK_HELD) { if (context != DRM_KERNEL_CONTEXT) { DRM_ERROR("%d holds heavyweight lock\n", context); } return 0; } } if ((_DRM_LOCKING_CONTEXT(new)) == context && (new & _DRM_LOCK_HELD)) { /* Have lock */ return 1; } return 0; } /** * This takes a lock forcibly and hands it to context. Should ONLY be used * inside *_unlock to give lock to kernel before calling *_dma_schedule. * * \param dev DRM device. * \param lock lock pointer. * \param context locking context. * \return always one. * * Resets the lock file pointer. * Marks the lock as held by the given context, via the \p cmpxchg instruction. */ static int drm_lock_transfer(struct drm_lock_data *lock_data, unsigned int context) { unsigned int old, new, prev; volatile unsigned int *lock = &lock_data->hw_lock->lock; lock_data->file_priv = NULL; do { old = *lock; new = context | _DRM_LOCK_HELD; prev = cmpxchg(lock, old, new); } while (prev != old); return 1; } /** * Free lock. * * \param dev DRM device. * \param lock lock. * \param context context. * * Resets the lock file pointer. * Marks the lock as not held, via the \p cmpxchg instruction. Wakes any task * waiting on the lock queue. */ int drm_lock_free(struct drm_lock_data *lock_data, unsigned int context) { unsigned int old, new, prev; volatile unsigned int *lock = &lock_data->hw_lock->lock; mtx_lock(&lock_data->spinlock); if (lock_data->kernel_waiters != 0) { drm_lock_transfer(lock_data, 0); lock_data->idle_has_lock = 1; mtx_unlock(&lock_data->spinlock); return 1; } mtx_unlock(&lock_data->spinlock); do { old = *lock; new = _DRM_LOCKING_CONTEXT(old); prev = cmpxchg(lock, old, new); } while (prev != old); if (_DRM_LOCK_IS_HELD(old) && _DRM_LOCKING_CONTEXT(old) != context) { DRM_ERROR("%d freed heavyweight lock held by %d\n", context, _DRM_LOCKING_CONTEXT(old)); return 1; } wake_up_interruptible(&lock_data->lock_queue); return 0; } #if defined(__linux__) /** * If we get here, it means that the process has called DRM_IOCTL_LOCK * without calling DRM_IOCTL_UNLOCK. * * If the lock is not held, then let the signal proceed as usual. If the lock * is held, then set the contended flag and keep the signal blocked. * * \param priv pointer to a drm_sigdata structure. * \return one if the signal should be delivered normally, or zero if the * signal should be blocked. */ static int drm_notifier(void *priv) { struct drm_sigdata *s = (struct drm_sigdata *) priv; unsigned int old, new, prev; /* Allow signal delivery if lock isn't held */ if (!s->lock || !_DRM_LOCK_IS_HELD(s->lock->lock) || _DRM_LOCKING_CONTEXT(s->lock->lock) != s->context) return 1; /* Otherwise, set flag to force call to drmUnlock */ do { old = s->lock->lock; new = old | _DRM_LOCK_CONT; prev = cmpxchg(&s->lock->lock, old, new); } while (prev != old); return 0; } #endif /** * This function returns immediately and takes the hw lock * with the kernel context if it is free, otherwise it gets the highest priority when and if * it is eventually released. * * This guarantees that the kernel will _eventually_ have the lock _unless_ it is held * by a blocked process. (In the latter case an explicit wait for the hardware lock would cause * a deadlock, which is why the "idlelock" was invented). * * This should be sufficient to wait for GPU idle without * having to worry about starvation. */ void drm_idlelock_take(struct drm_lock_data *lock_data) { int ret; mtx_lock(&lock_data->spinlock); lock_data->kernel_waiters++; if (!lock_data->idle_has_lock) { mtx_unlock(&lock_data->spinlock); ret = drm_lock_take(lock_data, DRM_KERNEL_CONTEXT); mtx_lock(&lock_data->spinlock); if (ret == 1) lock_data->idle_has_lock = 1; } mtx_unlock(&lock_data->spinlock); } EXPORT_SYMBOL(drm_idlelock_take); void drm_idlelock_release(struct drm_lock_data *lock_data) { unsigned int old, prev; volatile unsigned int *lock = &lock_data->hw_lock->lock; mtx_lock(&lock_data->spinlock); if (--lock_data->kernel_waiters == 0) { if (lock_data->idle_has_lock) { do { old = *lock; prev = cmpxchg(lock, old, DRM_KERNEL_CONTEXT); } while (prev != old); wake_up_interruptible(&lock_data->lock_queue); lock_data->idle_has_lock = 0; } } mtx_unlock(&lock_data->spinlock); } EXPORT_SYMBOL(drm_idlelock_release); int drm_i_have_hw_lock(struct drm_device *dev, struct drm_file *file_priv) { struct drm_master *master = file_priv->master; return (file_priv->lock_count && master->lock.hw_lock && _DRM_LOCK_IS_HELD(master->lock.hw_lock->lock) && master->lock.file_priv == file_priv); }
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