ppc/p4080: Determine various chip frequencies on CoreNet platforms
The means to determine the core, bus, and DDR frequencies are completely new on CoreNet style platforms. Additionally on p4080 we can have different frequencies for FMAN and PME IP blocks. We need to keep track of the FMAN & PME frequencies since they are used for time stamping capabilities inside each block. Signed-off-by: Kumar Gala <galak@kernel.crashing.org>
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@ -46,11 +46,20 @@ int checkcpu (void)
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char buf1[32], buf2[32];
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#ifdef CONFIG_DDR_CLK_FREQ
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volatile ccsr_gur_t *gur = (void *)(CONFIG_SYS_MPC85xx_GUTS_ADDR);
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#ifdef CONFIG_FSL_CORENET
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u32 ddr_sync = ((gur->rcwsr[5]) & FSL_CORENET_RCWSR5_DDR_SYNC)
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>> FSL_CORENET_RCWSR5_DDR_SYNC_SHIFT;
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#else
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u32 ddr_ratio = ((gur->porpllsr) & MPC85xx_PORPLLSR_DDR_RATIO)
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>> MPC85xx_PORPLLSR_DDR_RATIO_SHIFT;
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#endif
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#else
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#ifdef CONFIG_FSL_CORENET
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u32 ddr_sync = 0;
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#else
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u32 ddr_ratio = 0;
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#endif
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#endif /* CONFIG_DDR_CLK_FREQ */
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int i;
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svr = get_svr();
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@ -111,6 +120,19 @@ int checkcpu (void)
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}
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printf("\n CCB:%-4s MHz,\n", strmhz(buf1, sysinfo.freqSystemBus));
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#ifdef CONFIG_FSL_CORENET
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if (ddr_sync == 1) {
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printf(" DDR:%-4s MHz (%s MT/s data rate) "
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"(Synchronous), ",
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strmhz(buf1, sysinfo.freqDDRBus/2),
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strmhz(buf2, sysinfo.freqDDRBus));
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} else {
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printf(" DDR:%-4s MHz (%s MT/s data rate) "
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"(Asynchronous), ",
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strmhz(buf1, sysinfo.freqDDRBus/2),
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strmhz(buf2, sysinfo.freqDDRBus));
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}
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#else
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switch (ddr_ratio) {
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case 0x0:
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printf(" DDR:%-4s MHz (%s MT/s data rate), ",
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@ -118,22 +140,26 @@ int checkcpu (void)
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strmhz(buf2, sysinfo.freqDDRBus));
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break;
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case 0x7:
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printf(" DDR:%-4s MHz (%s MT/s data rate) (Synchronous), ",
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printf(" DDR:%-4s MHz (%s MT/s data rate) "
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"(Synchronous), ",
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strmhz(buf1, sysinfo.freqDDRBus/2),
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strmhz(buf2, sysinfo.freqDDRBus));
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break;
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default:
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printf(" DDR:%-4s MHz (%s MT/s data rate) (Asynchronous), ",
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printf(" DDR:%-4s MHz (%s MT/s data rate) "
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"(Asynchronous), ",
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strmhz(buf1, sysinfo.freqDDRBus/2),
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strmhz(buf2, sysinfo.freqDDRBus));
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break;
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}
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#endif
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if (sysinfo.freqLocalBus > LCRR_CLKDIV)
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if (sysinfo.freqLocalBus > LCRR_CLKDIV) {
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printf("LBC:%-4s MHz\n", strmhz(buf1, sysinfo.freqLocalBus));
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else
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} else {
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printf("LBC: unknown (LCRR[CLKDIV] = 0x%02lx)\n",
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sysinfo.freqLocalBus);
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}
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#ifdef CONFIG_CPM2
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printf("CPM: %s MHz\n", strmhz(buf1, sysinfo.freqSystemBus));
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@ -143,6 +169,17 @@ int checkcpu (void)
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printf(" QE:%-4s MHz\n", strmhz(buf1, sysinfo.freqQE));
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#endif
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#ifdef CONFIG_SYS_DPAA_FMAN
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for (i = 0; i < CONFIG_SYS_NUM_FMAN; i++) {
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printf(" FMAN%d: %s MHz\n", i,
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strmhz(buf1, sysinfo.freqFMan[i]));
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}
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#endif
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#ifdef CONFIG_SYS_DPAA_PME
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printf(" PME: %s MHz\n", strmhz(buf1, sysinfo.freqPME));
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#endif
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puts("L1: D-cache 32 kB enabled\n I-cache 32 kB enabled\n");
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return 0;
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@ -1,5 +1,6 @@
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/*
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* Copyright 2004, 2007-2009 Freescale Semiconductor, Inc.
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*
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* (C) Copyright 2003 Motorola Inc.
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* Xianghua Xiao, (X.Xiao@motorola.com)
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*
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@ -37,6 +38,90 @@ DECLARE_GLOBAL_DATA_PTR;
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void get_sys_info (sys_info_t * sysInfo)
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{
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volatile ccsr_gur_t *gur = (void *)(CONFIG_SYS_MPC85xx_GUTS_ADDR);
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#ifdef CONFIG_FSL_CORENET
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volatile ccsr_clk_t *clk = (void *)(CONFIG_SYS_FSL_CORENET_CLK_ADDR);
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const u8 core_cplx_PLL[16] = {
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[ 0] = 0, /* CC1 PPL / 1 */
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[ 1] = 0, /* CC1 PPL / 2 */
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[ 2] = 0, /* CC1 PPL / 4 */
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[ 4] = 1, /* CC2 PPL / 1 */
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[ 5] = 1, /* CC2 PPL / 2 */
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[ 6] = 1, /* CC2 PPL / 4 */
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[ 8] = 2, /* CC3 PPL / 1 */
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[ 9] = 2, /* CC3 PPL / 2 */
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[10] = 2, /* CC3 PPL / 4 */
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[12] = 3, /* CC4 PPL / 1 */
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[13] = 3, /* CC4 PPL / 2 */
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[14] = 3, /* CC4 PPL / 4 */
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};
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const u8 core_cplx_PLL_div[16] = {
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[ 0] = 1, /* CC1 PPL / 1 */
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[ 1] = 2, /* CC1 PPL / 2 */
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[ 2] = 4, /* CC1 PPL / 4 */
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[ 4] = 1, /* CC2 PPL / 1 */
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[ 5] = 2, /* CC2 PPL / 2 */
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[ 6] = 4, /* CC2 PPL / 4 */
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[ 8] = 1, /* CC3 PPL / 1 */
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[ 9] = 2, /* CC3 PPL / 2 */
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[10] = 4, /* CC3 PPL / 4 */
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[12] = 1, /* CC4 PPL / 1 */
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[13] = 2, /* CC4 PPL / 2 */
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[14] = 4, /* CC4 PPL / 4 */
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};
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uint lcrr_div, i, freqCC_PLL[4], rcw_tmp;
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unsigned long sysclk = CONFIG_SYS_CLK_FREQ;
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sysInfo->freqSystemBus = sysclk;
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sysInfo->freqDDRBus = sysclk;
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freqCC_PLL[0] = sysclk;
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freqCC_PLL[1] = sysclk;
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freqCC_PLL[2] = sysclk;
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freqCC_PLL[3] = sysclk;
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sysInfo->freqSystemBus *= (in_be32(&gur->rcwsr[0]) >> 25) & 0xf;
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sysInfo->freqDDRBus *= ((in_be32(&gur->rcwsr[0]) >> 17) & 0xf);
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freqCC_PLL[0] *= (in_be32(&clk->pllc1gsr) >> 1) & 0x3f;
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freqCC_PLL[1] *= (in_be32(&clk->pllc2gsr) >> 1) & 0x3f;
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freqCC_PLL[2] *= (in_be32(&clk->pllc3gsr) >> 1) & 0x3f;
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freqCC_PLL[3] *= (in_be32(&clk->pllc4gsr) >> 1) & 0x3f;
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rcw_tmp = in_be32(&gur->rcwsr[3]);
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for (i = 0; i < cpu_numcores(); i++) {
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u32 c_pll_sel = (in_be32(&clk->clkc0csr + i*8) >> 27) & 0xf;
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u32 cplx_pll = core_cplx_PLL[c_pll_sel];
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sysInfo->freqProcessor[i] =
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freqCC_PLL[cplx_pll] / core_cplx_PLL_div[c_pll_sel];
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}
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#define PME_CLK_SEL 0x80000000
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#define FM1_CLK_SEL 0x40000000
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#define FM2_CLK_SEL 0x20000000
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rcw_tmp = in_be32(&gur->rcwsr[7]);
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#ifdef CONFIG_SYS_DPAA_PME
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if (rcw_tmp & PME_CLK_SEL)
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sysInfo->freqPME = freqCC_PLL[2] / 2;
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else
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sysInfo->freqPME = sysInfo->freqSystemBus / 2;
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#endif
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#ifdef CONFIG_SYS_DPAA_FMAN
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if (rcw_tmp & FM1_CLK_SEL)
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sysInfo->freqFMan[0] = freqCC_PLL[2] / 2;
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else
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sysInfo->freqFMan[0] = sysInfo->freqSystemBus / 2;
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#if (CONFIG_SYS_NUM_FMAN) == 2
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if (rcw_tmp & FM2_CLK_SEL)
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sysInfo->freqFMan[1] = freqCC_PLL[2] / 2;
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else
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sysInfo->freqFMan[1] = sysInfo->freqSystemBus / 2;
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#endif
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#endif
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#else
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uint plat_ratio,e500_ratio,half_freqSystemBus;
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uint lcrr_div;
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int i;
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@ -67,6 +152,7 @@ void get_sys_info (sys_info_t * sysInfo)
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sysInfo->freqDDRBus = ddr_ratio * CONFIG_DDR_CLK_FREQ;
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}
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#endif
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#endif
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#ifdef CONFIG_QE
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qe_ratio = ((gur->porpllsr) & MPC85xx_PORPLLSR_QE_RATIO)
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@ -15,6 +15,12 @@ typedef struct
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unsigned long freqDDRBus;
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unsigned long freqLocalBus;
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unsigned long freqQE;
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#ifdef CONFIG_SYS_DPAA_FMAN
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unsigned long freqFMan[CONFIG_SYS_NUM_FMAN];
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#endif
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#ifdef CONFIG_SYS_DPAA_PME
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unsigned long freqPME;
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#endif
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} MPC85xx_SYS_INFO;
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#endif /* _ASMLANGUAGE */
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