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DocBook: fix various typos
This patch fixed spelling typo in various template files within Documentation/Docbook. Signed-off-by: Masanari Iida <standby24x7@gmail.com> Signed-off-by: Randy Dunlap <rdunlap@infradead.org> Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
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@ -708,7 +708,7 @@ hardware level details could be very different.
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<para>Systems need specialized hardware support to implement OTG,
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<para>Systems need specialized hardware support to implement OTG,
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notably including a special <emphasis>Mini-AB</emphasis> jack
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notably including a special <emphasis>Mini-AB</emphasis> jack
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and associated transciever to support <emphasis>Dual-Role</emphasis>
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and associated transceiver to support <emphasis>Dual-Role</emphasis>
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operation:
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operation:
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they can act either as a host, using the standard
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they can act either as a host, using the standard
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Linux-USB host side driver stack,
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Linux-USB host side driver stack,
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@ -182,7 +182,7 @@
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<para>
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<para>
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Each interrupt is described by an interrupt descriptor structure
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Each interrupt is described by an interrupt descriptor structure
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irq_desc. The interrupt is referenced by an 'unsigned int' numeric
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irq_desc. The interrupt is referenced by an 'unsigned int' numeric
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value which selects the corresponding interrupt decription structure
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value which selects the corresponding interrupt description structure
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in the descriptor structures array.
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in the descriptor structures array.
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The descriptor structure contains status information and pointers
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The descriptor structure contains status information and pointers
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to the interrupt flow method and the interrupt chip structure
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to the interrupt flow method and the interrupt chip structure
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@ -470,7 +470,7 @@ if (desc->irq_data.chip->irq_eoi)
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<para>
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<para>
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To avoid copies of identical implementations of IRQ chips the
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To avoid copies of identical implementations of IRQ chips the
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core provides a configurable generic interrupt chip
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core provides a configurable generic interrupt chip
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implementation. Developers should check carefuly whether the
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implementation. Developers should check carefully whether the
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generic chip fits their needs before implementing the same
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generic chip fits their needs before implementing the same
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functionality slightly differently themselves.
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functionality slightly differently themselves.
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</para>
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</para>
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@ -1760,7 +1760,7 @@ as it would be on UP.
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</para>
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</para>
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<para>
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<para>
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There is a furthur optimization possible here: remember our original
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There is a further optimization possible here: remember our original
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cache code, where there were no reference counts and the caller simply
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cache code, where there were no reference counts and the caller simply
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held the lock whenever using the object? This is still possible: if
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held the lock whenever using the object? This is still possible: if
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you hold the lock, no one can delete the object, so you don't need to
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you hold the lock, no one can delete the object, so you don't need to
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@ -677,7 +677,7 @@ and other resources, etc.
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<listitem>
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<listitem>
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<para>
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<para>
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ATA_QCFLAG_ACTIVE is clared from qc->flags.
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ATA_QCFLAG_ACTIVE is cleared from qc->flags.
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</para>
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</para>
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</listitem>
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</listitem>
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@ -708,7 +708,7 @@ and other resources, etc.
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<listitem>
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<listitem>
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<para>
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<para>
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qc->waiting is claread & completed (in that order).
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qc->waiting is cleared & completed (in that order).
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</para>
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</para>
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</listitem>
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</listitem>
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@ -1163,7 +1163,7 @@ and other resources, etc.
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<para>
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<para>
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Once sense data is acquired, this type of errors can be
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Once sense data is acquired, this type of errors can be
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handled similary to other SCSI errors. Note that sense data
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handled similarly to other SCSI errors. Note that sense data
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may indicate ATA bus error (e.g. Sense Key 04h HARDWARE ERROR
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may indicate ATA bus error (e.g. Sense Key 04h HARDWARE ERROR
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&& ASC/ASCQ 47h/00h SCSI PARITY ERROR). In such
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&& ASC/ASCQ 47h/00h SCSI PARITY ERROR). In such
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cases, the error should be considered as an ATA bus error and
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cases, the error should be considered as an ATA bus error and
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@ -68,7 +68,7 @@
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several digital tv standards. While it is called as DVB API,
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several digital tv standards. While it is called as DVB API,
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in fact it covers several different video standards including
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in fact it covers several different video standards including
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DVB-T, DVB-S, DVB-C and ATSC. The API is currently being updated
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DVB-T, DVB-S, DVB-C and ATSC. The API is currently being updated
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to documment support also for DVB-S2, ISDB-T and ISDB-S.</para>
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to document support also for DVB-S2, ISDB-T and ISDB-S.</para>
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<para>The third part covers the Remote Controller API.</para>
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<para>The third part covers the Remote Controller API.</para>
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<para>The fourth part covers the Media Controller API.</para>
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<para>The fourth part covers the Media Controller API.</para>
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<para>For additional information and for the latest development code,
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<para>For additional information and for the latest development code,
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@ -155,7 +155,7 @@
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release regulators. Functions are
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release regulators. Functions are
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provided to <link linkend='API-regulator-enable'>enable</link>
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provided to <link linkend='API-regulator-enable'>enable</link>
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and <link linkend='API-regulator-disable'>disable</link> the
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and <link linkend='API-regulator-disable'>disable</link> the
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reguator and to get and set the runtime parameters of the
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regulator and to get and set the runtime parameters of the
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regulator.
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regulator.
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</para>
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</para>
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<para>
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<para>
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@ -766,10 +766,10 @@ framework to set up sysfs files for this region. Simply leave it alone.
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<para>
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<para>
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The dynamic memory regions will be allocated when the UIO device file,
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The dynamic memory regions will be allocated when the UIO device file,
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<varname>/dev/uioX</varname> is opened.
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<varname>/dev/uioX</varname> is opened.
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Simiar to static memory resources, the memory region information for
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Similar to static memory resources, the memory region information for
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dynamic regions is then visible via sysfs at
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dynamic regions is then visible via sysfs at
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<varname>/sys/class/uio/uioX/maps/mapY/*</varname>.
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<varname>/sys/class/uio/uioX/maps/mapY/*</varname>.
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The dynmaic memory regions will be freed when the UIO device file is
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The dynamic memory regions will be freed when the UIO device file is
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closed. When no processes are holding the device file open, the address
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closed. When no processes are holding the device file open, the address
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returned to userspace is ~0.
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returned to userspace is ~0.
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</para>
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</para>
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@ -153,7 +153,7 @@
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<listitem><para>The Linux USB API supports synchronous calls for
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<listitem><para>The Linux USB API supports synchronous calls for
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control and bulk messages.
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control and bulk messages.
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It also supports asynchnous calls for all kinds of data transfer,
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It also supports asynchronous calls for all kinds of data transfer,
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using request structures called "URBs" (USB Request Blocks).
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using request structures called "URBs" (USB Request Blocks).
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</para></listitem>
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</para></listitem>
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@ -5696,7 +5696,7 @@ struct _snd_pcm_runtime {
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suspending the PCM operations via
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suspending the PCM operations via
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<function>snd_pcm_suspend_all()</function> or
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<function>snd_pcm_suspend_all()</function> or
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<function>snd_pcm_suspend()</function>. It means that the PCM
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<function>snd_pcm_suspend()</function>. It means that the PCM
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streams are already stoppped when the register snapshot is
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streams are already stopped when the register snapshot is
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taken. But, remember that you don't have to restart the PCM
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taken. But, remember that you don't have to restart the PCM
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stream in the resume callback. It'll be restarted via
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stream in the resume callback. It'll be restarted via
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trigger call with <constant>SNDRV_PCM_TRIGGER_RESUME</constant>
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trigger call with <constant>SNDRV_PCM_TRIGGER_RESUME</constant>
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