xref: /rk3399_rockchip-uboot/tools/omap/clocks_get_m_n.c (revision 326ea986ac150acdc7656d57fca647db80b50158)
13776801dSAneesh V /*
23776801dSAneesh V  * Program for finding M & N values for DPLLs
33776801dSAneesh V  * To be run on Host PC
43776801dSAneesh V  *
53776801dSAneesh V  * (C) Copyright 2010
63776801dSAneesh V  * Texas Instruments, <www.ti.com>
73776801dSAneesh V  *
83776801dSAneesh V  * Aneesh V <aneesh@ti.com>
93776801dSAneesh V  *
10*1a459660SWolfgang Denk  * SPDX-License-Identifier:	GPL-2.0+
113776801dSAneesh V  */
123776801dSAneesh V #include <stdlib.h>
133776801dSAneesh V #include <stdio.h>
143776801dSAneesh V typedef unsigned int u32;
153776801dSAneesh V #define MAX_N	127
163776801dSAneesh V 
173776801dSAneesh V /*
183776801dSAneesh V  * get_m_n_optimized() - Finds optimal DPLL multiplier(M) and divider(N)
193776801dSAneesh V  * values based on the reference frequency, required output frequency,
203776801dSAneesh V  * maximum tolerance for output frequency etc.
213776801dSAneesh V  *
223776801dSAneesh V  * target_freq_khz - output frequency required in KHz
233776801dSAneesh V  * ref_freq_khz - reference(input) frequency in KHz
243776801dSAneesh V  * m - pointer to computed M value
253776801dSAneesh V  * n - pointer to computed N value
263776801dSAneesh V  * tolerance_khz - tolerance for the output frequency. When the algorithm
273776801dSAneesh V  * succeeds in finding vialble M and N values the corresponding output
283776801dSAneesh V  * frequency will be in the range:
293776801dSAneesh V  *	[target_freq_khz - tolerance_khz, target_freq_khz]
303776801dSAneesh V  *
313776801dSAneesh V  * Formula:
323776801dSAneesh V  *	Fdpll = (2 * M * Fref) / (N + 1)
333776801dSAneesh V  *
343776801dSAneesh V  * Considerations for lock-time:
353776801dSAneesh V  *	- Smaller the N, better lock-time, especially lock-time will be
363776801dSAneesh V  *	- For acceptable lock-times:
373776801dSAneesh V  *		Fref / (M + 1) >= 1 MHz
383776801dSAneesh V  *
393776801dSAneesh V  * Considerations for power:
403776801dSAneesh V  *	- The difference in power for different N values giving the same
413776801dSAneesh V  *	  output is negligible. So, we optimize for lock-time
423776801dSAneesh V  *
433776801dSAneesh V  * Hard-constraints:
443776801dSAneesh V  *	- N can not be greater than 127(7 bit field for representing N)
453776801dSAneesh V  *
463776801dSAneesh V  * Usage:
473776801dSAneesh V  *	$ gcc clocks_get_m_n.c
483776801dSAneesh V  *	$ ./a.out
493776801dSAneesh V  */
get_m_n_optimized(u32 target_freq_khz,u32 ref_freq_khz,u32 * M,u32 * N)5028a181ffSAneesh V int get_m_n_optimized(u32 target_freq_khz, u32 ref_freq_khz, u32 *M, u32 *N)
513776801dSAneesh V {
5228a181ffSAneesh V 	u32 freq = target_freq_khz;
5328a181ffSAneesh V 	u32 m_optimal, n_optimal, freq_optimal = 0, freq_old;
5428a181ffSAneesh V 	u32 m, n;
5528a181ffSAneesh V 	n = 1;
563776801dSAneesh V 	while (1) {
5728a181ffSAneesh V 		m = target_freq_khz / ref_freq_khz / 2 * n;
583776801dSAneesh V 		freq_old = 0;
593776801dSAneesh V 		while (1) {
6028a181ffSAneesh V 			freq = ref_freq_khz * 2 * m / n;
6128a181ffSAneesh V 			if (freq > target_freq_khz) {
623776801dSAneesh V 				freq = freq_old;
6328a181ffSAneesh V 				m--;
643776801dSAneesh V 				break;
653776801dSAneesh V 			}
6628a181ffSAneesh V 			m++;
673776801dSAneesh V 			freq_old = freq;
683776801dSAneesh V 		}
6928a181ffSAneesh V 		if (freq > freq_optimal) {
7028a181ffSAneesh V 			freq_optimal = freq;
7128a181ffSAneesh V 			m_optimal = m;
7228a181ffSAneesh V 			n_optimal = n;
7328a181ffSAneesh V 		}
7428a181ffSAneesh V 		n++;
7528a181ffSAneesh V 		if ((freq_optimal == target_freq_khz) ||
7628a181ffSAneesh V 			((ref_freq_khz / n) < 1000)) {
773776801dSAneesh V 			break;
783776801dSAneesh V 		}
793776801dSAneesh V 	}
8028a181ffSAneesh V 	n--;
8128a181ffSAneesh V 	*M = m_optimal;
8228a181ffSAneesh V 	*N = n_optimal - 1;
8328a181ffSAneesh V 	printf("ref %d m %d n %d target %d locked %d\n", ref_freq_khz,
8428a181ffSAneesh V 		m_optimal, n_optimal - 1, target_freq_khz, freq_optimal);
853776801dSAneesh V 	return 0;
863776801dSAneesh V }
873776801dSAneesh V 
main(void)883776801dSAneesh V void main(void)
893776801dSAneesh V {
903776801dSAneesh V 	u32 m, n;
913776801dSAneesh V 	printf("\nMPU - 2000000\n");
9228a181ffSAneesh V 	get_m_n_optimized(2000000, 12000, &m, &n);
9328a181ffSAneesh V 	get_m_n_optimized(2000000, 13000, &m, &n);
9428a181ffSAneesh V 	get_m_n_optimized(2000000, 16800, &m, &n);
9528a181ffSAneesh V 	get_m_n_optimized(2000000, 19200, &m, &n);
9628a181ffSAneesh V 	get_m_n_optimized(2000000, 26000, &m, &n);
9728a181ffSAneesh V 	get_m_n_optimized(2000000, 27000, &m, &n);
9828a181ffSAneesh V 	get_m_n_optimized(2000000, 38400, &m, &n);
993776801dSAneesh V 
1003776801dSAneesh V 	printf("\nMPU - 1200000\n");
10128a181ffSAneesh V 	get_m_n_optimized(1200000, 12000, &m, &n);
10228a181ffSAneesh V 	get_m_n_optimized(1200000, 13000, &m, &n);
10328a181ffSAneesh V 	get_m_n_optimized(1200000, 16800, &m, &n);
10428a181ffSAneesh V 	get_m_n_optimized(1200000, 19200, &m, &n);
10528a181ffSAneesh V 	get_m_n_optimized(1200000, 26000, &m, &n);
10628a181ffSAneesh V 	get_m_n_optimized(1200000, 27000, &m, &n);
10728a181ffSAneesh V 	get_m_n_optimized(1200000, 38400, &m, &n);
1083776801dSAneesh V 
1093776801dSAneesh V 	printf("\nMPU - 1584000\n");
11028a181ffSAneesh V 	get_m_n_optimized(1584000, 12000, &m, &n);
11128a181ffSAneesh V 	get_m_n_optimized(1584000, 13000, &m, &n);
11228a181ffSAneesh V 	get_m_n_optimized(1584000, 16800, &m, &n);
11328a181ffSAneesh V 	get_m_n_optimized(1584000, 19200, &m, &n);
11428a181ffSAneesh V 	get_m_n_optimized(1584000, 26000, &m, &n);
11528a181ffSAneesh V 	get_m_n_optimized(1584000, 27000, &m, &n);
11628a181ffSAneesh V 	get_m_n_optimized(1584000, 38400, &m, &n);
1173776801dSAneesh V 
1183776801dSAneesh V 	printf("\nCore 1600000\n");
11928a181ffSAneesh V 	get_m_n_optimized(1600000, 12000, &m, &n);
12028a181ffSAneesh V 	get_m_n_optimized(1600000, 13000, &m, &n);
12128a181ffSAneesh V 	get_m_n_optimized(1600000, 16800, &m, &n);
12228a181ffSAneesh V 	get_m_n_optimized(1600000, 19200, &m, &n);
12328a181ffSAneesh V 	get_m_n_optimized(1600000, 26000, &m, &n);
12428a181ffSAneesh V 	get_m_n_optimized(1600000, 27000, &m, &n);
12528a181ffSAneesh V 	get_m_n_optimized(1600000, 38400, &m, &n);
1263776801dSAneesh V 
1273776801dSAneesh V 	printf("\nPER 1536000\n");
12828a181ffSAneesh V 	get_m_n_optimized(1536000, 12000, &m, &n);
12928a181ffSAneesh V 	get_m_n_optimized(1536000, 13000, &m, &n);
13028a181ffSAneesh V 	get_m_n_optimized(1536000, 16800, &m, &n);
13128a181ffSAneesh V 	get_m_n_optimized(1536000, 19200, &m, &n);
13228a181ffSAneesh V 	get_m_n_optimized(1536000, 26000, &m, &n);
13328a181ffSAneesh V 	get_m_n_optimized(1536000, 27000, &m, &n);
13428a181ffSAneesh V 	get_m_n_optimized(1536000, 38400, &m, &n);
1353776801dSAneesh V 
1363776801dSAneesh V 	printf("\nIVA 1862000\n");
13728a181ffSAneesh V 	get_m_n_optimized(1862000, 12000, &m, &n);
13828a181ffSAneesh V 	get_m_n_optimized(1862000, 13000, &m, &n);
13928a181ffSAneesh V 	get_m_n_optimized(1862000, 16800, &m, &n);
14028a181ffSAneesh V 	get_m_n_optimized(1862000, 19200, &m, &n);
14128a181ffSAneesh V 	get_m_n_optimized(1862000, 26000, &m, &n);
14228a181ffSAneesh V 	get_m_n_optimized(1862000, 27000, &m, &n);
14328a181ffSAneesh V 	get_m_n_optimized(1862000, 38400, &m, &n);
14428a181ffSAneesh V 
14528a181ffSAneesh V 	printf("\nIVA Nitro - 1290000\n");
14628a181ffSAneesh V 	get_m_n_optimized(1290000, 12000, &m, &n);
14728a181ffSAneesh V 	get_m_n_optimized(1290000, 13000, &m, &n);
14828a181ffSAneesh V 	get_m_n_optimized(1290000, 16800, &m, &n);
14928a181ffSAneesh V 	get_m_n_optimized(1290000, 19200, &m, &n);
15028a181ffSAneesh V 	get_m_n_optimized(1290000, 26000, &m, &n);
15128a181ffSAneesh V 	get_m_n_optimized(1290000, 27000, &m, &n);
15228a181ffSAneesh V 	get_m_n_optimized(1290000, 38400, &m, &n);
1533776801dSAneesh V 
1543776801dSAneesh V 	printf("\nABE 196608 sys clk\n");
15528a181ffSAneesh V 	get_m_n_optimized(196608, 12000, &m, &n);
15628a181ffSAneesh V 	get_m_n_optimized(196608, 13000, &m, &n);
15728a181ffSAneesh V 	get_m_n_optimized(196608, 16800, &m, &n);
15828a181ffSAneesh V 	get_m_n_optimized(196608, 19200, &m, &n);
15928a181ffSAneesh V 	get_m_n_optimized(196608, 26000, &m, &n);
16028a181ffSAneesh V 	get_m_n_optimized(196608, 27000, &m, &n);
16128a181ffSAneesh V 	get_m_n_optimized(196608, 38400, &m, &n);
1623776801dSAneesh V 
1633776801dSAneesh V 	printf("\nABE 196608 32K\n");
16428a181ffSAneesh V 	get_m_n_optimized(196608000/4, 32768, &m, &n);
1653776801dSAneesh V 
1663776801dSAneesh V 	printf("\nUSB 1920000\n");
16728a181ffSAneesh V 	get_m_n_optimized(1920000, 12000, &m, &n);
16828a181ffSAneesh V 	get_m_n_optimized(1920000, 13000, &m, &n);
16928a181ffSAneesh V 	get_m_n_optimized(1920000, 16800, &m, &n);
17028a181ffSAneesh V 	get_m_n_optimized(1920000, 19200, &m, &n);
17128a181ffSAneesh V 	get_m_n_optimized(1920000, 26000, &m, &n);
17228a181ffSAneesh V 	get_m_n_optimized(1920000, 27000, &m, &n);
17328a181ffSAneesh V 	get_m_n_optimized(1920000, 38400, &m, &n);
1743776801dSAneesh V 
1753776801dSAneesh V 	printf("\nCore ES1 1523712\n");
17628a181ffSAneesh V 	get_m_n_optimized(1524000, 12000, &m, &n);
17728a181ffSAneesh V 	get_m_n_optimized(1524000, 13000, &m, &n);
17828a181ffSAneesh V 	get_m_n_optimized(1524000, 16800, &m, &n);
17928a181ffSAneesh V 	get_m_n_optimized(1524000, 19200, &m, &n);
18028a181ffSAneesh V 	get_m_n_optimized(1524000, 26000, &m, &n);
18128a181ffSAneesh V 	get_m_n_optimized(1524000, 27000, &m, &n);
1823776801dSAneesh V 
1833776801dSAneesh V 	/* exact recommendation for SDPs */
18428a181ffSAneesh V 	get_m_n_optimized(1523712, 38400, &m, &n);
1853776801dSAneesh V 
1863776801dSAneesh V }
187