linux/drivers/gpu/drm/nouveau/nouveau_dp.c

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/*
* Copyright 2009 Red Hat Inc.
*
* 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 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
* THE COPYRIGHT HOLDER(S) OR AUTHOR(S) 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.
*
* Authors: Ben Skeggs
*/
Merge branch 'drm-next' of git://people.freedesktop.org/~airlied/linux Pull drm merge (part 1) from Dave Airlie: "So first of all my tree and uapi stuff has a conflict mess, its my fault as the nouveau stuff didn't hit -next as were trying to rebase regressions out of it before we merged. Highlights: - SH mobile modesetting driver and associated helpers - some DRM core documentation - i915 modesetting rework, haswell hdmi, haswell and vlv fixes, write combined pte writing, ilk rc6 support, - nouveau: major driver rework into a hw core driver, makes features like SLI a lot saner to implement, - psb: add eDP/DP support for Cedarview - radeon: 2 layer page tables, async VM pte updates, better PLL selection for > 2 screens, better ACPI interactions The rest is general grab bag of fixes. So why part 1? well I have the exynos pull req which came in a bit late but was waiting for me to do something they shouldn't have and it looks fairly safe, and David Howells has some more header cleanups he'd like me to pull, that seem like a good idea, but I'd like to get this merge out of the way so -next dosen't get blocked." Tons of conflicts mostly due to silly include line changes, but mostly mindless. A few other small semantic conflicts too, noted from Dave's pre-merged branch. * 'drm-next' of git://people.freedesktop.org/~airlied/linux: (447 commits) drm/nv98/crypt: fix fuc build with latest envyas drm/nouveau/devinit: fixup various issues with subdev ctor/init ordering drm/nv41/vm: fix and enable use of "real" pciegart drm/nv44/vm: fix and enable use of "real" pciegart drm/nv04/dmaobj: fixup vm target handling in preparation for nv4x pcie drm/nouveau: store supported dma mask in vmmgr drm/nvc0/ibus: initial implementation of subdev drm/nouveau/therm: add support for fan-control modes drm/nouveau/hwmon: rename pwm0* to pmw1* to follow hwmon's rules drm/nouveau/therm: calculate the pwm divisor on nv50+ drm/nouveau/fan: rewrite the fan tachometer driver to get more precision, faster drm/nouveau/therm: move thermal-related functions to the therm subdev drm/nouveau/bios: parse the pwm divisor from the perf table drm/nouveau/therm: use the EXTDEV table to detect i2c monitoring devices drm/nouveau/therm: rework thermal table parsing drm/nouveau/gpio: expose the PWM/TOGGLE parameter found in the gpio vbios table drm/nouveau: fix pm initialization order drm/nouveau/bios: check that fixed tvdac gpio data is valid before using it drm/nouveau: log channel debug/error messages from client object rather than drm client drm/nouveau: have drm debugging macros build on top of core macros ...
2012-10-04 14:29:23 +08:00
#include <drm/drm_dp_helper.h>
#include "nouveau_drv.h"
#include "nouveau_connector.h"
#include "nouveau_encoder.h"
#include "nouveau_crtc.h"
#include <nvif/class.h>
#include <nvif/cl5070.h>
MODULE_PARM_DESC(mst, "Enable DisplayPort multi-stream (default: enabled)");
static int nouveau_mst = 1;
module_param_named(mst, nouveau_mst, int, 0400);
static bool
nouveau_dp_has_sink_count(struct drm_connector *connector,
struct nouveau_encoder *outp)
{
return drm_dp_read_sink_count_cap(connector, outp->dp.dpcd, &outp->dp.desc);
}
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
static enum drm_connector_status
nouveau_dp_probe_dpcd(struct nouveau_connector *nv_connector,
struct nouveau_encoder *outp)
{
struct drm_connector *connector = &nv_connector->base;
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
struct drm_dp_aux *aux = &nv_connector->aux;
struct nv50_mstm *mstm = NULL;
enum drm_connector_status status = connector_status_disconnected;
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
int ret;
u8 *dpcd = outp->dp.dpcd;
ret = drm_dp_read_dpcd_caps(aux, dpcd);
if (ret < 0)
goto out;
ret = drm_dp_read_desc(aux, &outp->dp.desc, drm_dp_is_branch(dpcd));
if (ret < 0)
goto out;
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
if (nouveau_mst) {
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
mstm = outp->dp.mstm;
if (mstm)
mstm->can_mst = drm_dp_read_mst_cap(aux, dpcd);
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
}
if (nouveau_dp_has_sink_count(connector, outp)) {
ret = drm_dp_read_sink_count(aux);
if (ret < 0)
goto out;
outp->dp.sink_count = ret;
/*
* Dongle connected, but no display. Don't bother reading
* downstream port info
*/
if (!outp->dp.sink_count)
return connector_status_disconnected;
}
ret = drm_dp_read_downstream_info(aux, dpcd,
outp->dp.downstream_ports);
if (ret < 0)
goto out;
status = connector_status_connected;
out:
if (status != connector_status_connected) {
/* Clear any cached info */
outp->dp.sink_count = 0;
}
return status;
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
}
int
nouveau_dp_detect(struct nouveau_connector *nv_connector,
struct nouveau_encoder *nv_encoder)
{
struct drm_device *dev = nv_encoder->base.base.dev;
struct nouveau_drm *drm = nouveau_drm(dev);
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
struct drm_connector *connector = &nv_connector->base;
struct nv50_mstm *mstm = nv_encoder->dp.mstm;
enum drm_connector_status status;
u8 *dpcd = nv_encoder->dp.dpcd;
int ret = NOUVEAU_DP_NONE;
/* If we've already read the DPCD on an eDP device, we don't need to
* reread it as it won't change
*/
if (connector->connector_type == DRM_MODE_CONNECTOR_eDP &&
dpcd[DP_DPCD_REV] != 0)
return NOUVEAU_DP_SST;
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
mutex_lock(&nv_encoder->dp.hpd_irq_lock);
if (mstm) {
/* If we're not ready to handle MST state changes yet, just
* report the last status of the connector. We'll reprobe it
* once we've resumed.
*/
if (mstm->suspended) {
if (mstm->is_mst)
ret = NOUVEAU_DP_MST;
else if (connector->status ==
connector_status_connected)
ret = NOUVEAU_DP_SST;
goto out;
}
}
status = nouveau_dp_probe_dpcd(nv_connector, nv_encoder);
if (status == connector_status_disconnected)
goto out;
/* If we're in MST mode, we're done here */
if (mstm && mstm->can_mst && mstm->is_mst) {
ret = NOUVEAU_DP_MST;
goto out;
}
nv_encoder->dp.link_bw = 27000 * dpcd[DP_MAX_LINK_RATE];
nv_encoder->dp.link_nr =
dpcd[DP_MAX_LANE_COUNT] & DP_MAX_LANE_COUNT_MASK;
NV_DEBUG(drm, "display: %dx%d dpcd 0x%02x\n",
nv_encoder->dp.link_nr, nv_encoder->dp.link_bw,
dpcd[DP_DPCD_REV]);
NV_DEBUG(drm, "encoder: %dx%d\n",
nv_encoder->dcb->dpconf.link_nr,
nv_encoder->dcb->dpconf.link_bw);
if (nv_encoder->dcb->dpconf.link_nr < nv_encoder->dp.link_nr)
nv_encoder->dp.link_nr = nv_encoder->dcb->dpconf.link_nr;
if (nv_encoder->dcb->dpconf.link_bw < nv_encoder->dp.link_bw)
nv_encoder->dp.link_bw = nv_encoder->dcb->dpconf.link_bw;
NV_DEBUG(drm, "maximum: %dx%d\n",
nv_encoder->dp.link_nr, nv_encoder->dp.link_bw);
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
if (mstm && mstm->can_mst) {
ret = nv50_mstm_detect(nv_encoder);
if (ret == 1) {
ret = NOUVEAU_DP_MST;
goto out;
} else if (ret != 0) {
goto out;
}
}
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
ret = NOUVEAU_DP_SST;
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
out:
if (mstm && !mstm->suspended && ret != NOUVEAU_DP_MST)
nv50_mstm_remove(mstm);
mutex_unlock(&nv_encoder->dp.hpd_irq_lock);
return ret;
}
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
void nouveau_dp_irq(struct nouveau_drm *drm,
struct nouveau_connector *nv_connector)
{
struct drm_connector *connector = &nv_connector->base;
struct nouveau_encoder *outp = find_encoder(connector, DCB_OUTPUT_DP);
struct nv50_mstm *mstm;
int ret;
bool send_hpd = false;
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
if (!outp)
return;
mstm = outp->dp.mstm;
NV_DEBUG(drm, "service %s\n", connector->name);
mutex_lock(&outp->dp.hpd_irq_lock);
if (mstm && mstm->is_mst) {
if (!nv50_mstm_service(drm, nv_connector, mstm))
send_hpd = true;
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
} else {
drm_dp_cec_irq(&nv_connector->aux);
if (nouveau_dp_has_sink_count(connector, outp)) {
ret = drm_dp_read_sink_count(&nv_connector->aux);
if (ret != outp->dp.sink_count)
send_hpd = true;
if (ret >= 0)
outp->dp.sink_count = ret;
}
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
}
mutex_unlock(&outp->dp.hpd_irq_lock);
if (send_hpd)
nouveau_connector_hpd(connector);
drm/nouveau/kms/nv50-: Refactor and cleanup DP HPD handling First some backstory here: Currently, we keep track of whether or not we've enabled MST or not by trying to piggy-back off the MST helpers. This means that in order to check whether MST is enabled or not, we actually need to grab drm_dp_mst_topology_mgr.lock. Back when I originally wrote this, I did this piggy-backing with the intention that I'd eventually be teaching our MST helpers how to recover when an MST device has stopped responding, which in turn would require the MST helpers having a way of disabling MST independently of the driver. Note that this was before I reworked locking in the MST helpers, so at the time we were sticking random things under &mgr->lock - which grabbing this lock was meant to protect against. This never came to fruition because doing such a reset safely turned out to be a lot more painful and impossible then it sounds, and also just risks us working around issues with our MST handlers that should be properly fixed instead. Even if it did though, simply calling drm_dp_mst_topology_mgr_set_mst() from the MST helpers (with the exception of when we're tearing down our MST managers, that's always OK) wouldn't have been a bad idea, since drivers like nouveau and i915 need to do their own book keeping immediately after disabling MST. So-implementing that would likely require adding a hook for helper-triggered MST disables anyway. So, fast forward to now - we want to start adding support for all of the miscellaneous bits of the DP protocol (for both SST and MST) we're missing before moving on to supporting more complicated features like supporting different BPP values on MST, DSC, etc. Since many of these features only exist on SST and make use of DP HPD IRQs, we want to be able to atomically check whether we're servicing an MST IRQ or SST IRQ in nouveau_connector_hotplug(). Currently we literally don't do this at all, and just handle any kind of possible DP IRQ we could get including ESIs - even if MST isn't actually enabled. This would be very complicated and difficult to fix if we need to hold &mgr->lock while handling SST IRQs to ensure that the MST topology state doesn't change under us. What we really want here is to do our own tracking of whether MST is enabled or not, similar to drivers like i915, and define our own locking order to decomplicate things and avoid hitting locking issues in the future. So, let's do this by refactoring our MST probing/enabling code to use our own MST bookkeeping, along with adding a lock for protecting DP state that needs to be checked outside of our connector probing functions. While we're at it, we also remove a bunch of unneeded steps we perform when probing/enabling MST: * Enabling bits in MSTM_CTRL before calling drm_dp_mst_topology_mgr_set_mst(). I don't think these ever actually did anything, since the nvif methods for enabling MST don't actually do anything DPCD related and merely indicate to nvkm that we've turned on MST. * Checking the MSTM_CTRL bit is intact when checking the state of an enabled MST topology in nv50_mstm_detect(). I just added this to be safe originally, but now that we try reading the DPCD when probing DP connectors it shouldn't be needed as that will abort our hotplug probing if the device was removed well before we start checking for MST.. * All of the duplicate DPCD version checks. This leaves us with much nicer looking code, a much more sensible locking scheme, and an easy way of checking whether MST is enabled or not for handling DP HPD IRQs. v2: * Get rid of accidental newlines v4: * Fix uninitialized usage of mstm in nv50_mstm_detect() - thanks kernel bot! Signed-off-by: Lyude Paul <lyude@redhat.com> Reviewed-by: Ben Skeggs <bskeggs@redhat.com> Link: https://patchwork.freedesktop.org/patch/msgid/20200826182456.322681-9-lyude@redhat.com
2020-08-27 02:24:44 +08:00
}
/* TODO:
* - Use the minimum possible BPC here, once we add support for the max bpc
* property.
* - Validate against the DP caps advertised by the GPU (we don't check these
* yet)
*/
enum drm_mode_status
nv50_dp_mode_valid(struct drm_connector *connector,
struct nouveau_encoder *outp,
const struct drm_display_mode *mode,
unsigned *out_clock)
{
2020-09-30 06:31:32 +08:00
const unsigned int min_clock = 25000;
unsigned int max_rate, mode_rate, ds_max_dotclock, clock = mode->clock;
const u8 bpp = connector->display_info.bpc * 3;
if (mode->flags & DRM_MODE_FLAG_INTERLACE && !outp->caps.dp_interlace)
return MODE_NO_INTERLACE;
if ((mode->flags & DRM_MODE_FLAG_3D_MASK) == DRM_MODE_FLAG_3D_FRAME_PACKING)
clock *= 2;
2020-09-30 06:31:32 +08:00
max_rate = outp->dp.link_nr * outp->dp.link_bw;
mode_rate = DIV_ROUND_UP(clock * bpp, 8);
if (mode_rate > max_rate)
return MODE_CLOCK_HIGH;
ds_max_dotclock = drm_dp_downstream_max_dotclock(outp->dp.dpcd, outp->dp.downstream_ports);
if (ds_max_dotclock && clock > ds_max_dotclock)
return MODE_CLOCK_HIGH;
if (clock < min_clock)
return MODE_CLOCK_LOW;
if (out_clock)
*out_clock = clock;
return MODE_OK;
}