staging: unisys: visorbus: added struct visorchipset_device
Added the structure visorchipset_device and moved the globals to the struct. The visorchipset_init() function saves acpi_device within this structure. Reported-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org> Signed-off-by: Sameer Wadgaonkar <sameer.wadgaonkar@unisys.com> Signed-off-by: David Kershner <david.kershner@unisys.com> Reviewed-by: Tim Sell <timothy.sell@unisys.com> Signed-off-by: Greg Kroah-Hartman <gregkh@linuxfoundation.org>
This commit is contained in:
Родитель
c0487e7e83
Коммит
765b2f8280
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@ -72,9 +72,6 @@ visorchipset_release(struct inode *inode, struct file *file)
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* message, we switch back to fast polling mode.
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*/
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#define MIN_IDLE_SECONDS 10
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static unsigned long poll_jiffies = POLLJIFFIES_CONTROLVMCHANNEL_FAST;
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/* when we got our last controlvm message */
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static unsigned long most_recent_message_jiffies;
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struct parser_context {
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unsigned long allocbytes;
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@ -85,22 +82,28 @@ struct parser_context {
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char data[0];
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};
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static struct delayed_work periodic_controlvm_work;
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struct visorchipset_device {
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struct acpi_device *acpi_device;
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unsigned long poll_jiffies;
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/* when we got our last controlvm message */
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unsigned long most_recent_message_jiffies;
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struct delayed_work periodic_controlvm_work;
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struct cdev file_cdev;
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struct visorchannel **file_controlvm_channel;
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struct visorchannel *controlvm_channel;
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unsigned long controlvm_payload_bytes_buffered;
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/*
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* The following variables are used to handle the scenario where we are
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* unable to offload the payload from a controlvm message due to memory
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* requirements. In this scenario, we simply stash the controlvm
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* message, then attempt to process it again the next time
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* controlvm_periodic_work() runs.
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*/
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struct controlvm_message controlvm_pending_msg;
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bool controlvm_pending_msg_valid;
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};
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static struct cdev file_cdev;
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static struct visorchannel **file_controlvm_channel;
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static struct visorchannel *controlvm_channel;
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static unsigned long controlvm_payload_bytes_buffered;
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/*
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* The following globals are used to handle the scenario where we are unable to
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* offload the payload from a controlvm message due to memory requirements. In
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* this scenario, we simply stash the controlvm message, then attempt to
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* process it again the next time controlvm_periodic_work() runs.
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*/
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static struct controlvm_message controlvm_pending_msg;
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static bool controlvm_pending_msg_valid;
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static struct visorchipset_device *chipset_dev;
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struct parahotplug_request {
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struct list_head list;
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@ -119,7 +122,7 @@ static ssize_t toolaction_show(struct device *dev,
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{
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u8 tool_action = 0;
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visorchannel_read(controlvm_channel,
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visorchannel_read(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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tool_action), &tool_action, sizeof(u8));
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return sprintf(buf, "%u\n", tool_action);
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@ -136,7 +139,7 @@ static ssize_t toolaction_store(struct device *dev,
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return -EINVAL;
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ret = visorchannel_write
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(controlvm_channel,
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(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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tool_action),
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&tool_action, sizeof(u8));
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@ -153,7 +156,7 @@ static ssize_t boottotool_show(struct device *dev,
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{
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struct efi_spar_indication efi_spar_indication;
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visorchannel_read(controlvm_channel,
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visorchannel_read(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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efi_spar_ind), &efi_spar_indication,
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sizeof(struct efi_spar_indication));
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@ -172,7 +175,7 @@ static ssize_t boottotool_store(struct device *dev,
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efi_spar_indication.boot_to_tool = val;
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ret = visorchannel_write
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(controlvm_channel,
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(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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efi_spar_ind), &(efi_spar_indication),
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sizeof(struct efi_spar_indication));
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@ -188,7 +191,7 @@ static ssize_t error_show(struct device *dev, struct device_attribute *attr,
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{
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u32 error = 0;
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visorchannel_read(controlvm_channel,
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visorchannel_read(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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installation_error),
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&error, sizeof(u32));
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@ -205,7 +208,7 @@ static ssize_t error_store(struct device *dev, struct device_attribute *attr,
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return -EINVAL;
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ret = visorchannel_write
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(controlvm_channel,
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(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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installation_error),
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&error, sizeof(u32));
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@ -221,7 +224,7 @@ static ssize_t textid_show(struct device *dev, struct device_attribute *attr,
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u32 text_id = 0;
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visorchannel_read
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(controlvm_channel,
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(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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installation_text_id),
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&text_id, sizeof(u32));
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@ -238,7 +241,7 @@ static ssize_t textid_store(struct device *dev, struct device_attribute *attr,
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return -EINVAL;
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ret = visorchannel_write
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(controlvm_channel,
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(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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installation_text_id),
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&text_id, sizeof(u32));
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@ -253,7 +256,7 @@ static ssize_t remaining_steps_show(struct device *dev,
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{
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u16 remaining_steps = 0;
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visorchannel_read(controlvm_channel,
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visorchannel_read(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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installation_remaining_steps),
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&remaining_steps, sizeof(u16));
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@ -271,7 +274,7 @@ static ssize_t remaining_steps_store(struct device *dev,
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return -EINVAL;
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ret = visorchannel_write
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(controlvm_channel,
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(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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installation_remaining_steps),
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&remaining_steps, sizeof(u16));
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@ -292,7 +295,7 @@ parser_id_get(struct parser_context *ctx)
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static void parser_done(struct parser_context *ctx)
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{
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controlvm_payload_bytes_buffered -= ctx->param_bytes;
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chipset_dev->controlvm_payload_bytes_buffered -= ctx->param_bytes;
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kfree(ctx);
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}
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@ -405,7 +408,7 @@ controlvm_respond_chipset_init(struct controlvm_message_header *msg_hdr,
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controlvm_init_response(&outmsg, msg_hdr, response);
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outmsg.cmd.init_chipset.features = features;
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return visorchannel_signalinsert(controlvm_channel,
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return visorchannel_signalinsert(chipset_dev->controlvm_channel,
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CONTROLVM_QUEUE_REQUEST, &outmsg);
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}
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@ -455,7 +458,7 @@ controlvm_respond(struct controlvm_message_header *msg_hdr, int response)
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if (outmsg.hdr.flags.test_message == 1)
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return -EINVAL;
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return visorchannel_signalinsert(controlvm_channel,
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return visorchannel_signalinsert(chipset_dev->controlvm_channel,
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CONTROLVM_QUEUE_REQUEST, &outmsg);
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}
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@ -468,7 +471,7 @@ static int controlvm_respond_physdev_changestate(
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controlvm_init_response(&outmsg, msg_hdr, response);
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outmsg.cmd.device_change_state.state = state;
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outmsg.cmd.device_change_state.flags.phys_device = 1;
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return visorchannel_signalinsert(controlvm_channel,
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return visorchannel_signalinsert(chipset_dev->controlvm_channel,
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CONTROLVM_QUEUE_REQUEST, &outmsg);
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}
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@ -484,7 +487,7 @@ save_crash_message(struct controlvm_message *msg, enum crash_obj_type typ)
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u16 local_crash_msg_count;
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int err;
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err = visorchannel_read(controlvm_channel,
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err = visorchannel_read(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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saved_crash_message_count),
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&local_crash_msg_count, sizeof(u16));
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@ -501,7 +504,7 @@ save_crash_message(struct controlvm_message *msg, enum crash_obj_type typ)
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return -EIO;
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}
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err = visorchannel_read(controlvm_channel,
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err = visorchannel_read(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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saved_crash_message_offset),
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&local_crash_msg_offset, sizeof(u32));
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@ -514,7 +517,7 @@ save_crash_message(struct controlvm_message *msg, enum crash_obj_type typ)
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switch (typ) {
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case CRASH_DEV:
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local_crash_msg_offset += sizeof(struct controlvm_message);
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err = visorchannel_write(controlvm_channel,
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err = visorchannel_write(chipset_dev->controlvm_channel,
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local_crash_msg_offset,
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msg,
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sizeof(struct controlvm_message));
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@ -525,7 +528,7 @@ save_crash_message(struct controlvm_message *msg, enum crash_obj_type typ)
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}
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break;
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case CRASH_BUS:
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err = visorchannel_write(controlvm_channel,
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err = visorchannel_write(chipset_dev->controlvm_channel,
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local_crash_msg_offset,
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msg,
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sizeof(struct controlvm_message));
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@ -576,7 +579,7 @@ device_changestate_responder(enum controlvm_id cmd_id,
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outmsg.cmd.device_change_state.dev_no = dev_no;
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outmsg.cmd.device_change_state.state = response_state;
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return visorchannel_signalinsert(controlvm_channel,
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return visorchannel_signalinsert(chipset_dev->controlvm_channel,
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CONTROLVM_QUEUE_REQUEST, &outmsg);
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}
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@ -1398,7 +1401,7 @@ setup_crash_devices_work_queue(struct work_struct *work)
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chipset_init(&msg);
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/* get saved message count */
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if (visorchannel_read(controlvm_channel,
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if (visorchannel_read(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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saved_crash_message_count),
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&local_crash_msg_count, sizeof(u16)) < 0) {
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@ -1415,7 +1418,7 @@ setup_crash_devices_work_queue(struct work_struct *work)
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}
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/* get saved crash message offset */
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if (visorchannel_read(controlvm_channel,
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if (visorchannel_read(chipset_dev->controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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saved_crash_message_offset),
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&local_crash_msg_offset, sizeof(u32)) < 0) {
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@ -1425,7 +1428,7 @@ setup_crash_devices_work_queue(struct work_struct *work)
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}
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/* read create device message for storage bus offset */
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if (visorchannel_read(controlvm_channel,
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if (visorchannel_read(chipset_dev->controlvm_channel,
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local_crash_msg_offset,
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&local_crash_bus_msg,
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sizeof(struct controlvm_message)) < 0) {
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@ -1435,7 +1438,7 @@ setup_crash_devices_work_queue(struct work_struct *work)
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}
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/* read create device message for storage device */
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if (visorchannel_read(controlvm_channel,
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if (visorchannel_read(chipset_dev->controlvm_channel,
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local_crash_msg_offset +
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sizeof(struct controlvm_message),
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&local_crash_dev_msg,
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@ -1548,11 +1551,11 @@ visorchipset_mmap(struct file *file, struct vm_area_struct *vma)
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switch (offset) {
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case VISORCHIPSET_MMAP_CONTROLCHANOFFSET:
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vma->vm_flags |= VM_IO;
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if (!*file_controlvm_channel)
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if (!*chipset_dev->file_controlvm_channel)
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return -ENXIO;
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visorchannel_read
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(*file_controlvm_channel,
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(*chipset_dev->file_controlvm_channel,
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offsetof(struct spar_controlvm_channel_protocol,
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gp_control_channel),
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&addr, sizeof(addr));
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@ -1633,9 +1636,9 @@ visorchipset_file_init(dev_t major_dev, struct visorchannel **controlvm_channel)
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{
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int rc = 0;
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file_controlvm_channel = controlvm_channel;
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cdev_init(&file_cdev, &visorchipset_fops);
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file_cdev.owner = THIS_MODULE;
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chipset_dev->file_controlvm_channel = controlvm_channel;
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cdev_init(&chipset_dev->file_cdev, &visorchipset_fops);
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chipset_dev->file_cdev.owner = THIS_MODULE;
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if (MAJOR(major_dev) == 0) {
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rc = alloc_chrdev_region(&major_dev, 0, 1, "visorchipset");
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/* dynamic major device number registration required */
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@ -1647,7 +1650,8 @@ visorchipset_file_init(dev_t major_dev, struct visorchannel **controlvm_channel)
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if (rc < 0)
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return rc;
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}
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rc = cdev_add(&file_cdev, MKDEV(MAJOR(major_dev), 0), 1);
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rc = cdev_add(&chipset_dev->file_cdev,
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MKDEV(MAJOR(major_dev), 0), 1);
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if (rc < 0) {
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unregister_chrdev_region(major_dev, 1);
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return rc;
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@ -1658,9 +1662,9 @@ visorchipset_file_init(dev_t major_dev, struct visorchannel **controlvm_channel)
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static void
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visorchipset_file_cleanup(dev_t major_dev)
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{
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if (file_cdev.ops)
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cdev_del(&file_cdev);
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file_cdev.ops = NULL;
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if (chipset_dev->file_cdev.ops)
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cdev_del(&chipset_dev->file_cdev);
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chipset_dev->file_cdev.ops = NULL;
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unregister_chrdev_region(major_dev, 1);
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}
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@ -1677,7 +1681,7 @@ parser_init_byte_stream(u64 addr, u32 bytes, bool local, bool *retry)
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* '\0'-terminated
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*/
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allocbytes++;
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if ((controlvm_payload_bytes_buffered + bytes)
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if ((chipset_dev->controlvm_payload_bytes_buffered + bytes)
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> MAX_CONTROLVM_PAYLOAD_BYTES) {
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*retry = true;
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return NULL;
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@ -1710,7 +1714,7 @@ parser_init_byte_stream(u64 addr, u32 bytes, bool local, bool *retry)
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}
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ctx->byte_stream = true;
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controlvm_payload_bytes_buffered += ctx->param_bytes;
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chipset_dev->controlvm_payload_bytes_buffered += ctx->param_bytes;
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return ctx;
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@ -1769,10 +1773,10 @@ handle_command(struct controlvm_message inmsg, u64 channel_addr)
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if (!local_addr) {
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controlvm_init_response(&ackmsg, &inmsg.hdr,
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CONTROLVM_RESP_SUCCESS);
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if (controlvm_channel)
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visorchannel_signalinsert(controlvm_channel,
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CONTROLVM_QUEUE_ACK,
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&ackmsg);
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if (chipset_dev->controlvm_channel)
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visorchannel_signalinsert(
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chipset_dev->controlvm_channel,
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CONTROLVM_QUEUE_ACK, &ackmsg);
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}
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switch (inmsg.hdr.id) {
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case CONTROLVM_CHIPSET_INIT:
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@ -1844,7 +1848,7 @@ handle_command(struct controlvm_message inmsg, u64 channel_addr)
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static bool
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read_controlvm_event(struct controlvm_message *msg)
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{
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if (!visorchannel_signalremove(controlvm_channel,
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if (!visorchannel_signalremove(chipset_dev->controlvm_channel,
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CONTROLVM_QUEUE_EVENT, msg)) {
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/* got a message */
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if (msg->hdr.flags.test_message == 1)
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@ -1892,19 +1896,19 @@ controlvm_periodic_work(struct work_struct *work)
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bool got_command = false;
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bool handle_command_failed = false;
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while (!visorchannel_signalremove(controlvm_channel,
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while (!visorchannel_signalremove(chipset_dev->controlvm_channel,
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CONTROLVM_QUEUE_RESPONSE,
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&inmsg))
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;
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if (!got_command) {
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if (controlvm_pending_msg_valid) {
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if (chipset_dev->controlvm_pending_msg_valid) {
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/*
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* we throttled processing of a prior
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* msg, so try to process it again
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* rather than reading a new one
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*/
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inmsg = controlvm_pending_msg;
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controlvm_pending_msg_valid = false;
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inmsg = chipset_dev->controlvm_pending_msg;
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chipset_dev->controlvm_pending_msg_valid = false;
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got_command = true;
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} else {
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got_command = read_controlvm_event(&inmsg);
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@ -1913,10 +1917,10 @@ controlvm_periodic_work(struct work_struct *work)
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handle_command_failed = false;
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while (got_command && (!handle_command_failed)) {
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most_recent_message_jiffies = jiffies;
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chipset_dev->most_recent_message_jiffies = jiffies;
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if (handle_command(inmsg,
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visorchannel_get_physaddr
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(controlvm_channel)))
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(chipset_dev->controlvm_channel)))
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got_command = read_controlvm_event(&inmsg);
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else {
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/*
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|
@ -1927,29 +1931,34 @@ controlvm_periodic_work(struct work_struct *work)
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* reprocess it on our next loop
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*/
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handle_command_failed = true;
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controlvm_pending_msg = inmsg;
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controlvm_pending_msg_valid = true;
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chipset_dev->controlvm_pending_msg = inmsg;
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chipset_dev->controlvm_pending_msg_valid = true;
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}
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}
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/* parahotplug_worker */
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parahotplug_process_list();
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||||
|
||||
if (time_after(jiffies,
|
||||
most_recent_message_jiffies + (HZ * MIN_IDLE_SECONDS))) {
|
||||
if (time_after(jiffies, chipset_dev->most_recent_message_jiffies +
|
||||
(HZ * MIN_IDLE_SECONDS))) {
|
||||
/*
|
||||
* it's been longer than MIN_IDLE_SECONDS since we
|
||||
* processed our last controlvm message; slow down the
|
||||
* polling
|
||||
*/
|
||||
if (poll_jiffies != POLLJIFFIES_CONTROLVMCHANNEL_SLOW)
|
||||
poll_jiffies = POLLJIFFIES_CONTROLVMCHANNEL_SLOW;
|
||||
if (chipset_dev->poll_jiffies !=
|
||||
POLLJIFFIES_CONTROLVMCHANNEL_SLOW)
|
||||
chipset_dev->poll_jiffies =
|
||||
POLLJIFFIES_CONTROLVMCHANNEL_SLOW;
|
||||
} else {
|
||||
if (poll_jiffies != POLLJIFFIES_CONTROLVMCHANNEL_FAST)
|
||||
poll_jiffies = POLLJIFFIES_CONTROLVMCHANNEL_FAST;
|
||||
if (chipset_dev->poll_jiffies !=
|
||||
POLLJIFFIES_CONTROLVMCHANNEL_FAST)
|
||||
chipset_dev->poll_jiffies =
|
||||
POLLJIFFIES_CONTROLVMCHANNEL_FAST;
|
||||
}
|
||||
|
||||
schedule_delayed_work(&periodic_controlvm_work, poll_jiffies);
|
||||
schedule_delayed_work(&chipset_dev->periodic_controlvm_work,
|
||||
chipset_dev->poll_jiffies);
|
||||
}
|
||||
|
||||
static int
|
||||
|
@ -1958,36 +1967,49 @@ visorchipset_init(struct acpi_device *acpi_device)
|
|||
int err = -ENODEV;
|
||||
u64 addr;
|
||||
uuid_le uuid = SPAR_CONTROLVM_CHANNEL_PROTOCOL_UUID;
|
||||
struct visorchannel *controlvm_channel;
|
||||
|
||||
addr = controlvm_get_channel_address();
|
||||
if (!addr)
|
||||
goto error;
|
||||
|
||||
controlvm_channel = visorchannel_create_with_lock(addr, 0,
|
||||
GFP_KERNEL, uuid);
|
||||
if (!controlvm_channel)
|
||||
chipset_dev = kzalloc(sizeof(*chipset_dev), GFP_KERNEL);
|
||||
if (!chipset_dev)
|
||||
goto error;
|
||||
|
||||
acpi_device->driver_data = chipset_dev;
|
||||
|
||||
chipset_dev->acpi_device = acpi_device;
|
||||
chipset_dev->poll_jiffies = POLLJIFFIES_CONTROLVMCHANNEL_FAST;
|
||||
controlvm_channel = visorchannel_create_with_lock(addr,
|
||||
0, GFP_KERNEL, uuid);
|
||||
|
||||
if (!controlvm_channel)
|
||||
goto error_free_chipset_dev;
|
||||
|
||||
chipset_dev->controlvm_channel = controlvm_channel;
|
||||
if (!SPAR_CONTROLVM_CHANNEL_OK_CLIENT(
|
||||
visorchannel_get_header(controlvm_channel)))
|
||||
goto error_destroy_channel;
|
||||
|
||||
major_dev = MKDEV(visorchipset_major, 0);
|
||||
err = visorchipset_file_init(major_dev, &controlvm_channel);
|
||||
err = visorchipset_file_init(major_dev,
|
||||
&chipset_dev->controlvm_channel);
|
||||
if (err < 0)
|
||||
goto error_destroy_channel;
|
||||
|
||||
/* if booting in a crash kernel */
|
||||
if (is_kdump_kernel())
|
||||
INIT_DELAYED_WORK(&periodic_controlvm_work,
|
||||
INIT_DELAYED_WORK(&chipset_dev->periodic_controlvm_work,
|
||||
setup_crash_devices_work_queue);
|
||||
else
|
||||
INIT_DELAYED_WORK(&periodic_controlvm_work,
|
||||
INIT_DELAYED_WORK(&chipset_dev->periodic_controlvm_work,
|
||||
controlvm_periodic_work);
|
||||
|
||||
most_recent_message_jiffies = jiffies;
|
||||
poll_jiffies = POLLJIFFIES_CONTROLVMCHANNEL_FAST;
|
||||
schedule_delayed_work(&periodic_controlvm_work, poll_jiffies);
|
||||
chipset_dev->most_recent_message_jiffies = jiffies;
|
||||
chipset_dev->poll_jiffies = POLLJIFFIES_CONTROLVMCHANNEL_FAST;
|
||||
schedule_delayed_work(&chipset_dev->periodic_controlvm_work,
|
||||
chipset_dev->poll_jiffies);
|
||||
|
||||
visorchipset_platform_device.dev.devt = major_dev;
|
||||
if (platform_device_register(&visorchipset_platform_device) < 0) {
|
||||
|
@ -2008,11 +2030,14 @@ error_unregister:
|
|||
platform_device_unregister(&visorchipset_platform_device);
|
||||
|
||||
error_cancel_work:
|
||||
cancel_delayed_work_sync(&periodic_controlvm_work);
|
||||
cancel_delayed_work_sync(&chipset_dev->periodic_controlvm_work);
|
||||
visorchipset_file_cleanup(major_dev);
|
||||
|
||||
error_destroy_channel:
|
||||
visorchannel_destroy(controlvm_channel);
|
||||
visorchannel_destroy(chipset_dev->controlvm_channel);
|
||||
|
||||
error_free_chipset_dev:
|
||||
kfree(chipset_dev);
|
||||
|
||||
error:
|
||||
POSTCODE_LINUX(CHIPSET_INIT_FAILURE_PC, 0, err, DIAG_SEVERITY_ERR);
|
||||
|
@ -2026,12 +2051,14 @@ visorchipset_exit(struct acpi_device *acpi_device)
|
|||
|
||||
visorbus_exit();
|
||||
|
||||
cancel_delayed_work_sync(&periodic_controlvm_work);
|
||||
cancel_delayed_work_sync(&chipset_dev->periodic_controlvm_work);
|
||||
|
||||
visorchannel_destroy(controlvm_channel);
|
||||
visorchannel_destroy(chipset_dev->controlvm_channel);
|
||||
|
||||
visorchipset_file_cleanup(visorchipset_platform_device.dev.devt);
|
||||
platform_device_unregister(&visorchipset_platform_device);
|
||||
kfree(chipset_dev);
|
||||
|
||||
POSTCODE_LINUX(DRIVER_EXIT_PC, 0, 0, DIAG_SEVERITY_PRINT);
|
||||
|
||||
return 0;
|
||||
|
|
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