The namespace of NVKM is being changed to nvkm_ instead of nouveau_, which will be used for the DRM part of the driver. This is being done in order to make it very clear as to what part of the driver a given symbol belongs to, and as a minor step towards splitting the DRM driver out to be able to stand on its own (for virt). Because there's already a large amount of churn here anyway, this is as good a time as any to also switch to NVIDIA's device and chipset naming to ease collaboration with them. A comparison of objdump disassemblies proves no code changes. Signed-off-by: Ben Skeggs <bskeggs@redhat.com>
477 lines
11 KiB
C
477 lines
11 KiB
C
/*
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* Copyright 2013 Red Hat Inc.
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*
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* Permission is hereby granted, free of charge, to any person obtaining a
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* copy of this software and associated documentation files (the "Software"),
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* to deal in the Software without restriction, including without limitation
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* the rights to use, copy, modify, merge, publish, distribute, sublicense,
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* and/or sell copies of the Software, and to permit persons to whom the
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* Software is furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in
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* all copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL
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* THE COPYRIGHT HOLDER(S) OR AUTHOR(S) BE LIABLE FOR ANY CLAIM, DAMAGES OR
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* OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
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* ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
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* OTHER DEALINGS IN THE SOFTWARE.
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*
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* Authors: Ben Skeggs
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*/
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#include "priv.h"
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#include <core/client.h>
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#include <core/device.h>
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#include <core/option.h>
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#include <nvif/class.h>
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#include <nvif/ioctl.h>
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#include <nvif/unpack.h>
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#define QUAD_MASK 0x0f
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#define QUAD_FREE 0x01
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static struct nvkm_perfsig *
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nvkm_perfsig_find_(struct nvkm_perfdom *dom, const char *name, u32 size)
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{
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char path[64];
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int i;
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if (name[0] != '/') {
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for (i = 0; i < dom->signal_nr; i++) {
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if ( dom->signal[i].name &&
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!strncmp(name, dom->signal[i].name, size))
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return &dom->signal[i];
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}
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} else {
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for (i = 0; i < dom->signal_nr; i++) {
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snprintf(path, sizeof(path), "/%s/%02x", dom->name, i);
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if (!strncmp(name, path, size))
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return &dom->signal[i];
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}
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}
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return NULL;
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}
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struct nvkm_perfsig *
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nvkm_perfsig_find(struct nvkm_pm *ppm, const char *name, u32 size,
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struct nvkm_perfdom **pdom)
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{
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struct nvkm_perfdom *dom = *pdom;
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struct nvkm_perfsig *sig;
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if (dom == NULL) {
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list_for_each_entry(dom, &ppm->domains, head) {
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sig = nvkm_perfsig_find_(dom, name, size);
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if (sig) {
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*pdom = dom;
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return sig;
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}
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}
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return NULL;
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}
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return nvkm_perfsig_find_(dom, name, size);
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}
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struct nvkm_perfctr *
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nvkm_perfsig_wrap(struct nvkm_pm *ppm, const char *name,
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struct nvkm_perfdom **pdom)
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{
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struct nvkm_perfsig *sig;
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struct nvkm_perfctr *ctr;
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sig = nvkm_perfsig_find(ppm, name, strlen(name), pdom);
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if (!sig)
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return NULL;
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ctr = kzalloc(sizeof(*ctr), GFP_KERNEL);
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if (ctr) {
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ctr->signal[0] = sig;
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ctr->logic_op = 0xaaaa;
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}
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return ctr;
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}
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/*******************************************************************************
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* Perfmon object classes
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******************************************************************************/
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static int
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nvkm_perfctr_query(struct nvkm_object *object, void *data, u32 size)
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{
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union {
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struct nvif_perfctr_query_v0 v0;
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} *args = data;
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struct nvkm_device *device = nv_device(object);
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struct nvkm_pm *ppm = (void *)object->engine;
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struct nvkm_perfdom *dom = NULL, *chk;
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const bool all = nvkm_boolopt(device->cfgopt, "NvPmShowAll", false);
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const bool raw = nvkm_boolopt(device->cfgopt, "NvPmUnnamed", all);
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const char *name;
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int tmp = 0, di, si;
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int ret;
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nv_ioctl(object, "perfctr query size %d\n", size);
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if (nvif_unpack(args->v0, 0, 0, false)) {
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nv_ioctl(object, "perfctr query vers %d iter %08x\n",
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args->v0.version, args->v0.iter);
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di = (args->v0.iter & 0xff000000) >> 24;
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si = (args->v0.iter & 0x00ffffff) - 1;
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} else
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return ret;
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list_for_each_entry(chk, &ppm->domains, head) {
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if (tmp++ == di) {
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dom = chk;
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break;
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}
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}
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if (dom == NULL || si >= (int)dom->signal_nr)
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return -EINVAL;
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if (si >= 0) {
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if (raw || !(name = dom->signal[si].name)) {
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snprintf(args->v0.name, sizeof(args->v0.name),
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"/%s/%02x", dom->name, si);
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} else {
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strncpy(args->v0.name, name, sizeof(args->v0.name));
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}
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}
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do {
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while (++si < dom->signal_nr) {
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if (all || dom->signal[si].name) {
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args->v0.iter = (di << 24) | ++si;
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return 0;
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}
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}
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si = -1;
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di = di + 1;
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dom = list_entry(dom->head.next, typeof(*dom), head);
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} while (&dom->head != &ppm->domains);
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args->v0.iter = 0xffffffff;
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return 0;
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}
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static int
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nvkm_perfctr_sample(struct nvkm_object *object, void *data, u32 size)
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{
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union {
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struct nvif_perfctr_sample none;
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} *args = data;
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struct nvkm_pm *ppm = (void *)object->engine;
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struct nvkm_perfctr *ctr, *tmp;
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struct nvkm_perfdom *dom;
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int ret;
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nv_ioctl(object, "perfctr sample size %d\n", size);
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if (nvif_unvers(args->none)) {
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nv_ioctl(object, "perfctr sample\n");
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} else
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return ret;
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ppm->sequence++;
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list_for_each_entry(dom, &ppm->domains, head) {
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/* sample previous batch of counters */
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if (dom->quad != QUAD_MASK) {
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dom->func->next(ppm, dom);
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tmp = NULL;
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while (!list_empty(&dom->list)) {
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ctr = list_first_entry(&dom->list,
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typeof(*ctr), head);
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if (ctr->slot < 0) break;
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if ( tmp && tmp == ctr) break;
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if (!tmp) tmp = ctr;
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dom->func->read(ppm, dom, ctr);
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ctr->slot = -1;
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list_move_tail(&ctr->head, &dom->list);
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}
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}
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dom->quad = QUAD_MASK;
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/* setup next batch of counters for sampling */
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list_for_each_entry(ctr, &dom->list, head) {
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ctr->slot = ffs(dom->quad) - 1;
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if (ctr->slot < 0)
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break;
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dom->quad &= ~(QUAD_FREE << ctr->slot);
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dom->func->init(ppm, dom, ctr);
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}
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if (dom->quad != QUAD_MASK)
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dom->func->next(ppm, dom);
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}
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return 0;
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}
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static int
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nvkm_perfctr_read(struct nvkm_object *object, void *data, u32 size)
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{
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union {
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struct nvif_perfctr_read_v0 v0;
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} *args = data;
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struct nvkm_perfctr *ctr = (void *)object;
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int ret;
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nv_ioctl(object, "perfctr read size %d\n", size);
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if (nvif_unpack(args->v0, 0, 0, false)) {
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nv_ioctl(object, "perfctr read vers %d\n", args->v0.version);
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} else
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return ret;
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if (!ctr->clk)
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return -EAGAIN;
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args->v0.clk = ctr->clk;
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args->v0.ctr = ctr->ctr;
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return 0;
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}
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static int
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nvkm_perfctr_mthd(struct nvkm_object *object, u32 mthd, void *data, u32 size)
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{
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switch (mthd) {
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case NVIF_PERFCTR_V0_QUERY:
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return nvkm_perfctr_query(object, data, size);
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case NVIF_PERFCTR_V0_SAMPLE:
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return nvkm_perfctr_sample(object, data, size);
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case NVIF_PERFCTR_V0_READ:
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return nvkm_perfctr_read(object, data, size);
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default:
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break;
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}
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return -EINVAL;
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}
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static void
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nvkm_perfctr_dtor(struct nvkm_object *object)
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{
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struct nvkm_perfctr *ctr = (void *)object;
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if (ctr->head.next)
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list_del(&ctr->head);
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nvkm_object_destroy(&ctr->base);
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}
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static int
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nvkm_perfctr_ctor(struct nvkm_object *parent, struct nvkm_object *engine,
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struct nvkm_oclass *oclass, void *data, u32 size,
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struct nvkm_object **pobject)
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{
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union {
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struct nvif_perfctr_v0 v0;
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} *args = data;
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struct nvkm_pm *ppm = (void *)engine;
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struct nvkm_perfdom *dom = NULL;
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struct nvkm_perfsig *sig[4] = {};
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struct nvkm_perfctr *ctr;
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int ret, i;
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nv_ioctl(parent, "create perfctr size %d\n", size);
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if (nvif_unpack(args->v0, 0, 0, false)) {
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nv_ioctl(parent, "create perfctr vers %d logic_op %04x\n",
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args->v0.version, args->v0.logic_op);
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} else
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return ret;
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for (i = 0; i < ARRAY_SIZE(args->v0.name) && args->v0.name[i][0]; i++) {
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sig[i] = nvkm_perfsig_find(ppm, args->v0.name[i],
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strnlen(args->v0.name[i],
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sizeof(args->v0.name[i])),
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&dom);
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if (!sig[i])
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return -EINVAL;
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}
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ret = nvkm_object_create(parent, engine, oclass, 0, &ctr);
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*pobject = nv_object(ctr);
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if (ret)
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return ret;
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ctr->slot = -1;
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ctr->logic_op = args->v0.logic_op;
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ctr->signal[0] = sig[0];
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ctr->signal[1] = sig[1];
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ctr->signal[2] = sig[2];
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ctr->signal[3] = sig[3];
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if (dom)
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list_add_tail(&ctr->head, &dom->list);
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return 0;
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}
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static struct nvkm_ofuncs
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nvkm_perfctr_ofuncs = {
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.ctor = nvkm_perfctr_ctor,
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.dtor = nvkm_perfctr_dtor,
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.init = nvkm_object_init,
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.fini = nvkm_object_fini,
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.mthd = nvkm_perfctr_mthd,
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};
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struct nvkm_oclass
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nvkm_pm_sclass[] = {
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{ .handle = NVIF_IOCTL_NEW_V0_PERFCTR,
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.ofuncs = &nvkm_perfctr_ofuncs,
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},
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{},
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};
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/*******************************************************************************
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* PPM context
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******************************************************************************/
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static void
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nvkm_perfctx_dtor(struct nvkm_object *object)
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{
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struct nvkm_pm *ppm = (void *)object->engine;
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mutex_lock(&nv_subdev(ppm)->mutex);
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nvkm_engctx_destroy(&ppm->context->base);
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ppm->context = NULL;
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mutex_unlock(&nv_subdev(ppm)->mutex);
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}
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static int
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nvkm_perfctx_ctor(struct nvkm_object *parent, struct nvkm_object *engine,
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struct nvkm_oclass *oclass, void *data, u32 size,
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struct nvkm_object **pobject)
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{
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struct nvkm_pm *ppm = (void *)engine;
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struct nvkm_perfctx *ctx;
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int ret;
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ret = nvkm_engctx_create(parent, engine, oclass, NULL, 0, 0, 0, &ctx);
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*pobject = nv_object(ctx);
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if (ret)
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return ret;
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mutex_lock(&nv_subdev(ppm)->mutex);
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if (ppm->context == NULL)
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ppm->context = ctx;
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mutex_unlock(&nv_subdev(ppm)->mutex);
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if (ctx != ppm->context)
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return -EBUSY;
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return 0;
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}
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struct nvkm_oclass
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nvkm_pm_cclass = {
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.handle = NV_ENGCTX(PM, 0x00),
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.ofuncs = &(struct nvkm_ofuncs) {
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.ctor = nvkm_perfctx_ctor,
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.dtor = nvkm_perfctx_dtor,
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.init = _nvkm_engctx_init,
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.fini = _nvkm_engctx_fini,
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},
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};
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/*******************************************************************************
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* PPM engine/subdev functions
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******************************************************************************/
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int
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nvkm_perfdom_new(struct nvkm_pm *ppm, const char *name, u32 mask,
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u32 base, u32 size_unit, u32 size_domain,
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const struct nvkm_specdom *spec)
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{
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const struct nvkm_specdom *sdom;
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const struct nvkm_specsig *ssig;
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struct nvkm_perfdom *dom;
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int i;
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for (i = 0; i == 0 || mask; i++) {
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u32 addr = base + (i * size_unit);
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if (i && !(mask & (1 << i)))
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continue;
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sdom = spec;
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while (sdom->signal_nr) {
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dom = kzalloc(sizeof(*dom) + sdom->signal_nr *
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sizeof(*dom->signal), GFP_KERNEL);
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if (!dom)
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return -ENOMEM;
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if (mask) {
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snprintf(dom->name, sizeof(dom->name),
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"%s/%02x/%02x", name, i,
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(int)(sdom - spec));
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} else {
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snprintf(dom->name, sizeof(dom->name),
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"%s/%02x", name, (int)(sdom - spec));
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}
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list_add_tail(&dom->head, &ppm->domains);
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INIT_LIST_HEAD(&dom->list);
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dom->func = sdom->func;
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dom->addr = addr;
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dom->quad = QUAD_MASK;
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dom->signal_nr = sdom->signal_nr;
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ssig = (sdom++)->signal;
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while (ssig->name) {
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dom->signal[ssig->signal].name = ssig->name;
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ssig++;
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}
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addr += size_domain;
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}
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mask &= ~(1 << i);
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}
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return 0;
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}
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int
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_nvkm_pm_fini(struct nvkm_object *object, bool suspend)
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{
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struct nvkm_pm *ppm = (void *)object;
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return nvkm_engine_fini(&ppm->base, suspend);
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}
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int
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_nvkm_pm_init(struct nvkm_object *object)
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{
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struct nvkm_pm *ppm = (void *)object;
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return nvkm_engine_init(&ppm->base);
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}
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void
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_nvkm_pm_dtor(struct nvkm_object *object)
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{
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struct nvkm_pm *ppm = (void *)object;
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struct nvkm_perfdom *dom, *tmp;
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list_for_each_entry_safe(dom, tmp, &ppm->domains, head) {
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list_del(&dom->head);
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kfree(dom);
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}
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nvkm_engine_destroy(&ppm->base);
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}
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int
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nvkm_pm_create_(struct nvkm_object *parent, struct nvkm_object *engine,
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struct nvkm_oclass *oclass, int length, void **pobject)
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{
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struct nvkm_pm *ppm;
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int ret;
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ret = nvkm_engine_create_(parent, engine, oclass, true, "PPM",
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"pm", length, pobject);
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ppm = *pobject;
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if (ret)
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return ret;
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INIT_LIST_HEAD(&ppm->domains);
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return 0;
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}
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