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Commit 1240e6b5 authored by Takashi Iwai's avatar Takashi Iwai
Browse files

Merge branch 'fix/misc' into topic/misc

parents c9ff921a a5c7d797
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@@ -28,6 +28,7 @@ modules.builtin
*.gz
*.bz2
*.lzma
*.lzo
*.patch
*.gcno

+7 −0
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filesystems/dnotify_test
laptops/dslm
timers/hpet_example
vm/hugepage-mmap
vm/hugepage-shm
vm/map_hugetlb
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@@ -389,7 +389,7 @@
      </para>
      <para>
	If your driver supports memory management (it should!), you'll
	need to set that up at load time as well.  How you intialize
	need to set that up at load time as well.  How you initialize
	it depends on which memory manager you're using, TTM or GEM.
      </para>
      <sect3>
@@ -399,7 +399,7 @@
	  aperture space for graphics devices. TTM supports both UMA devices
	  and devices with dedicated video RAM (VRAM), i.e. most discrete
	  graphics devices.  If your device has dedicated RAM, supporting
	  TTM is desireable.  TTM also integrates tightly with your
	  TTM is desirable.  TTM also integrates tightly with your
	  driver specific buffer execution function.  See the radeon
	  driver for examples.
	</para>
@@ -443,7 +443,7 @@
	  likely eventually calling ttm_bo_global_init and
	  ttm_bo_global_release, respectively.  Also like the previous
	  object, ttm_global_item_ref is used to create an initial reference
	  count for the TTM, which will call your initalization function.
	  count for the TTM, which will call your initialization function.
	</para>
      </sect3>
      <sect3>
@@ -557,7 +557,7 @@ void intel_crt_init(struct drm_device *dev)
	  CRT connector and encoder combination is created.  A device
	  specific i2c bus is also created, for fetching EDID data and
	  performing monitor detection.  Once the process is complete,
	  the new connector is regsitered with sysfs, to make its
	  the new connector is registered with sysfs, to make its
	  properties available to applications.
	</para>
	<sect4>
@@ -581,12 +581,12 @@ void intel_crt_init(struct drm_device *dev)
	<para>
	  For each encoder, CRTC and connector, several functions must
	  be provided, depending on the object type.  Encoder objects
	  need should provide a DPMS (basically on/off) function, mode fixup
	  need to provide a DPMS (basically on/off) function, mode fixup
	  (for converting requested modes into native hardware timings),
	  and prepare, set and commit functions for use by the core DRM
	  helper functions.  Connector helpers need to provide mode fetch and
	  validity functions as well as an encoder matching function for
	  returing an ideal encoder for a given connector.  The core
	  returning an ideal encoder for a given connector.  The core
	  connector functions include a DPMS callback, (deprecated)
	  save/restore routines, detection, mode probing, property handling,
	  and cleanup functions.
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@@ -58,7 +58,7 @@ MPEG stream embedded, sliced VBI data format in this specification.
</contrib>
	<affiliation>
	  <address>
	    <email>awalls@radix.net</email>
	    <email>awalls@md.metrocast.net</email>
	  </address>
	</affiliation>
      </author>
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@@ -53,8 +53,10 @@ input</refpurpose>
automatically, similar to sensing the video standard. To do so, applications
call <constant> VIDIOC_QUERY_DV_PRESET</constant> with a pointer to a
&v4l2-dv-preset; type. Once the hardware detects a preset, that preset is
returned in the preset field of &v4l2-dv-preset;. When detection is not
possible or fails, the value V4L2_DV_INVALID is returned.</para>
returned in the preset field of &v4l2-dv-preset;. If the preset could not be
detected because there was no signal, or the signal was unreliable, or the
signal did not map to a supported preset, then the value V4L2_DV_INVALID is
returned.</para>
  </refsect1>

  <refsect1>
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