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clk_gp106.h and clk_gv100.h define conflicting symbols, which prevent including them both at the same time. One of the conflicting structs is namemap_cfg, which has different definitions in clk_gp106.h and include/nvgpu/clk.h. Move all constants used only by clk_*.c to be defined there, delete the extra namemap_cfg structure definition, and modify code to cope with the unified namemap_cfg. JIRa NVGPU-596 Change-Id: Id68919da4567ec1507eda0cfaa19bf047a7bfc59 Signed-off-by: Terje Bergstrom <tbergstrom@nvidia.com> Reviewed-on: https://git-master.nvidia.com/r/1945285 Reviewed-by: svc-misra-checker <svc-misra-checker@nvidia.com> GVS: Gerrit_Virtual_Submit Reviewed-by: mobile promotions <svcmobile_promotions@nvidia.com> Tested-by: mobile promotions <svcmobile_promotions@nvidia.com>
207 lines
5.7 KiB
C
207 lines
5.7 KiB
C
/*
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* GV100 Clocks
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*
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* Copyright (c) 2016-2018, NVIDIA CORPORATION. All rights reserved.
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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 AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
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* FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
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* DEALINGS IN THE SOFTWARE.
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*/
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#ifdef CONFIG_DEBUG_FS
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#include <linux/debugfs.h>
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#include "os/linux/os_linux.h"
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#endif
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#include <nvgpu/kmem.h>
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#include <nvgpu/io.h>
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#include <nvgpu/list.h>
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#include <nvgpu/clk_arb.h>
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#include <nvgpu/timers.h>
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#include <nvgpu/gk20a.h>
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#include <nvgpu/clk.h>
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#include "clk_gv100.h"
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#include <nvgpu/hw/gv100/hw_trim_gv100.h>
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#define CLK_NAMEMAP_INDEX_GPCCLK 0x00
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#define CLK_NAMEMAP_INDEX_XBARCLK 0x02
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#define CLK_NAMEMAP_INDEX_SYSCLK 0x07 /* SYSPLL */
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#define CLK_NAMEMAP_INDEX_DRAMCLK 0x20 /* DRAMPLL */
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#define CLK_DEFAULT_CNTRL_SETTLE_RETRIES 10
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#define CLK_DEFAULT_CNTRL_SETTLE_USECS 5
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#define XTAL_CNTR_CLKS 27000 /* 1000usec at 27KHz XTAL */
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#define XTAL_CNTR_DELAY 10000 /* we need acuracy up to the 10ms */
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#define XTAL_SCALE_TO_KHZ 1
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#define NUM_NAMEMAPS (3U)
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#define XTAL4X_KHZ 108000
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u32 gv100_crystal_clk_hz(struct gk20a *g)
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{
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return (XTAL4X_KHZ * 1000);
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}
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unsigned long gv100_clk_measure_freq(struct gk20a *g, u32 api_domain)
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{
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struct clk_gk20a *clk = &g->clk;
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u32 freq_khz;
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u32 i;
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struct namemap_cfg *c = NULL;
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for (i = 0; i < clk->namemap_num; i++) {
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if (api_domain == clk->namemap_xlat_table[i]) {
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c = &clk->clk_namemap[i];
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break;
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}
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}
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if (c == NULL) {
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return 0;
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}
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if (c->is_counter != 0U) {
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freq_khz = c->scale * gv100_get_rate_cntr(g, c);
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} else {
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freq_khz = 0U;
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/* TODO: PLL read */
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}
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/* Convert to HZ */
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return freq_khz * 1000UL;
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}
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int gv100_init_clk_support(struct gk20a *g)
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{
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struct clk_gk20a *clk = &g->clk;
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int err = 0;
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nvgpu_log_fn(g, " ");
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err = nvgpu_mutex_init(&clk->clk_mutex);
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if (err != 0) {
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return err;
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}
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clk->clk_namemap = (struct namemap_cfg *)
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nvgpu_kzalloc(g, sizeof(struct namemap_cfg) * NUM_NAMEMAPS);
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if (clk->clk_namemap == NULL) {
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nvgpu_mutex_destroy(&clk->clk_mutex);
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return -ENOMEM;
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}
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clk->namemap_xlat_table = nvgpu_kcalloc(g, NUM_NAMEMAPS, sizeof(u32));
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if (clk->namemap_xlat_table == NULL) {
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nvgpu_kfree(g, clk->clk_namemap);
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nvgpu_mutex_destroy(&clk->clk_mutex);
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return -ENOMEM;
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}
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clk->clk_namemap[0] = (struct namemap_cfg) {
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.namemap = CLK_NAMEMAP_INDEX_GPCCLK,
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.is_enable = 1,
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.is_counter = 1,
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.g = g,
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.cntr = {
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.reg_ctrl_addr = trim_gpc_bcast_fr_clk_cntr_ncgpcclk_cfg_r(),
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.reg_ctrl_idx = trim_gpc_bcast_fr_clk_cntr_ncgpcclk_cfg_source_gpcclk_f(),
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.reg_cntr_addr[0] = trim_gpc_bcast_fr_clk_cntr_ncgpcclk_cnt0_r(),
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.reg_cntr_addr[1] = trim_gpc_bcast_fr_clk_cntr_ncgpcclk_cnt1_r()
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},
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.name = "gpcclk",
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.scale = 1
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};
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clk->namemap_xlat_table[0] = CTRL_CLK_DOMAIN_GPCCLK;
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clk->clk_namemap[1] = (struct namemap_cfg) {
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.namemap = CLK_NAMEMAP_INDEX_SYSCLK,
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.is_enable = 1,
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.is_counter = 1,
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.g = g,
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.cntr = {
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.reg_ctrl_addr = trim_sys_fr_clk_cntr_sysclk_cfg_r(),
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.reg_ctrl_idx = trim_sys_fr_clk_cntr_sysclk_cfg_source_sysclk_f(),
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.reg_cntr_addr[0] = trim_sys_fr_clk_cntr_sysclk_cntr0_r(),
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.reg_cntr_addr[1] = trim_sys_fr_clk_cntr_sysclk_cntr1_r()
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},
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.name = "sysclk",
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.scale = 1
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};
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clk->namemap_xlat_table[1] = CTRL_CLK_DOMAIN_SYSCLK;
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clk->clk_namemap[2] = (struct namemap_cfg) {
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.namemap = CLK_NAMEMAP_INDEX_XBARCLK,
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.is_enable = 1,
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.is_counter = 1,
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.g = g,
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.cntr = {
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.reg_ctrl_addr = trim_sys_fll_fr_clk_cntr_xbarclk_cfg_r(),
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.reg_ctrl_idx = trim_sys_fll_fr_clk_cntr_xbarclk_cfg_source_xbarclk_f(),
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.reg_cntr_addr[0] = trim_sys_fll_fr_clk_cntr_xbarclk_cntr0_r(),
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.reg_cntr_addr[1] = trim_sys_fll_fr_clk_cntr_xbarclk_cntr1_r()
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},
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.name = "xbarclk",
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.scale = 1
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};
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clk->namemap_xlat_table[2] = CTRL_CLK_DOMAIN_XBARCLK;
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clk->namemap_num = NUM_NAMEMAPS;
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clk->g = g;
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return err;
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}
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u32 gv100_get_rate_cntr(struct gk20a *g, struct namemap_cfg *c) {
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u32 cntr = 0;
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u64 cntr_start = 0;
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u64 cntr_stop = 0;
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struct clk_gk20a *clk = &g->clk;
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if ((c == NULL) || (c->cntr.reg_ctrl_addr == 0U) ||
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(c->cntr.reg_cntr_addr[0] == 0U) ||
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(c->cntr.reg_cntr_addr[1]) == 0U) {
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return 0;
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}
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nvgpu_mutex_acquire(&clk->clk_mutex);
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/* Read the counter values */
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/* Counter is 36bits , 32 bits on addr[0] and 4 lsb on addr[1] others zero*/
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cntr_start = (u64)gk20a_readl(g, c->cntr.reg_cntr_addr[0]);
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cntr_start += ((u64)gk20a_readl(g, c->cntr.reg_cntr_addr[1]) << 32);
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nvgpu_udelay(XTAL_CNTR_DELAY);
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cntr_stop = (u64) gk20a_readl(g, c->cntr.reg_cntr_addr[0]);
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cntr_stop += ((u64)gk20a_readl(g, c->cntr.reg_cntr_addr[1]) << 32);
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/*Calculate the difference and convert to KHz*/
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cntr = (u32)((cntr_stop - cntr_start) / 10ULL);
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nvgpu_mutex_release(&clk->clk_mutex);
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return cntr;
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}
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int gv100_suspend_clk_support(struct gk20a *g)
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{
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nvgpu_mutex_destroy(&g->clk.clk_mutex);
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return 0;
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}
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