ccu_nkmp.c 5.6 KB

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  1. /*
  2. * Copyright (C) 2016 Maxime Ripard
  3. * Maxime Ripard <maxime.ripard@free-electrons.com>
  4. *
  5. * This program is free software; you can redistribute it and/or
  6. * modify it under the terms of the GNU General Public License as
  7. * published by the Free Software Foundation; either version 2 of
  8. * the License, or (at your option) any later version.
  9. */
  10. #include <linux/clk-provider.h>
  11. #include "ccu_gate.h"
  12. #include "ccu_nkmp.h"
  13. struct _ccu_nkmp {
  14. unsigned long n, min_n, max_n;
  15. unsigned long k, min_k, max_k;
  16. unsigned long m, min_m, max_m;
  17. unsigned long p, min_p, max_p;
  18. };
  19. static unsigned long ccu_nkmp_calc_rate(unsigned long parent,
  20. unsigned long n, unsigned long k,
  21. unsigned long m, unsigned long p)
  22. {
  23. u64 rate = parent;
  24. rate *= n * k;
  25. do_div(rate, m * p);
  26. return rate;
  27. }
  28. static void ccu_nkmp_find_best(unsigned long parent, unsigned long rate,
  29. struct _ccu_nkmp *nkmp)
  30. {
  31. unsigned long best_rate = 0;
  32. unsigned long best_n = 0, best_k = 0, best_m = 0, best_p = 0;
  33. unsigned long _n, _k, _m, _p;
  34. for (_k = nkmp->min_k; _k <= nkmp->max_k; _k++) {
  35. for (_n = nkmp->min_n; _n <= nkmp->max_n; _n++) {
  36. for (_m = nkmp->min_m; _m <= nkmp->max_m; _m++) {
  37. for (_p = nkmp->min_p; _p <= nkmp->max_p; _p <<= 1) {
  38. unsigned long tmp_rate;
  39. tmp_rate = ccu_nkmp_calc_rate(parent,
  40. _n, _k,
  41. _m, _p);
  42. if (tmp_rate > rate)
  43. continue;
  44. if ((rate - tmp_rate) < (rate - best_rate)) {
  45. best_rate = tmp_rate;
  46. best_n = _n;
  47. best_k = _k;
  48. best_m = _m;
  49. best_p = _p;
  50. }
  51. }
  52. }
  53. }
  54. }
  55. nkmp->n = best_n;
  56. nkmp->k = best_k;
  57. nkmp->m = best_m;
  58. nkmp->p = best_p;
  59. }
  60. static void ccu_nkmp_disable(struct clk_hw *hw)
  61. {
  62. struct ccu_nkmp *nkmp = hw_to_ccu_nkmp(hw);
  63. return ccu_gate_helper_disable(&nkmp->common, nkmp->enable);
  64. }
  65. static int ccu_nkmp_enable(struct clk_hw *hw)
  66. {
  67. struct ccu_nkmp *nkmp = hw_to_ccu_nkmp(hw);
  68. return ccu_gate_helper_enable(&nkmp->common, nkmp->enable);
  69. }
  70. static int ccu_nkmp_is_enabled(struct clk_hw *hw)
  71. {
  72. struct ccu_nkmp *nkmp = hw_to_ccu_nkmp(hw);
  73. return ccu_gate_helper_is_enabled(&nkmp->common, nkmp->enable);
  74. }
  75. static unsigned long ccu_nkmp_recalc_rate(struct clk_hw *hw,
  76. unsigned long parent_rate)
  77. {
  78. struct ccu_nkmp *nkmp = hw_to_ccu_nkmp(hw);
  79. unsigned long n, m, k, p, rate;
  80. u32 reg;
  81. reg = readl(nkmp->common.base + nkmp->common.reg);
  82. n = reg >> nkmp->n.shift;
  83. n &= (1 << nkmp->n.width) - 1;
  84. n += nkmp->n.offset;
  85. if (!n)
  86. n++;
  87. k = reg >> nkmp->k.shift;
  88. k &= (1 << nkmp->k.width) - 1;
  89. k += nkmp->k.offset;
  90. if (!k)
  91. k++;
  92. m = reg >> nkmp->m.shift;
  93. m &= (1 << nkmp->m.width) - 1;
  94. m += nkmp->m.offset;
  95. if (!m)
  96. m++;
  97. p = reg >> nkmp->p.shift;
  98. p &= (1 << nkmp->p.width) - 1;
  99. rate = ccu_nkmp_calc_rate(parent_rate, n, k, m, 1 << p);
  100. if (nkmp->common.features & CCU_FEATURE_FIXED_POSTDIV)
  101. rate /= nkmp->fixed_post_div;
  102. return rate;
  103. }
  104. static long ccu_nkmp_round_rate(struct clk_hw *hw, unsigned long rate,
  105. unsigned long *parent_rate)
  106. {
  107. struct ccu_nkmp *nkmp = hw_to_ccu_nkmp(hw);
  108. struct _ccu_nkmp _nkmp;
  109. if (nkmp->common.features & CCU_FEATURE_FIXED_POSTDIV)
  110. rate *= nkmp->fixed_post_div;
  111. if (nkmp->max_rate && rate > nkmp->max_rate) {
  112. rate = nkmp->max_rate;
  113. if (nkmp->common.features & CCU_FEATURE_FIXED_POSTDIV)
  114. rate /= nkmp->fixed_post_div;
  115. return rate;
  116. }
  117. _nkmp.min_n = nkmp->n.min ?: 1;
  118. _nkmp.max_n = nkmp->n.max ?: 1 << nkmp->n.width;
  119. _nkmp.min_k = nkmp->k.min ?: 1;
  120. _nkmp.max_k = nkmp->k.max ?: 1 << nkmp->k.width;
  121. _nkmp.min_m = 1;
  122. _nkmp.max_m = nkmp->m.max ?: 1 << nkmp->m.width;
  123. _nkmp.min_p = 1;
  124. _nkmp.max_p = nkmp->p.max ?: 1 << ((1 << nkmp->p.width) - 1);
  125. ccu_nkmp_find_best(*parent_rate, rate, &_nkmp);
  126. rate = ccu_nkmp_calc_rate(*parent_rate, _nkmp.n, _nkmp.k,
  127. _nkmp.m, _nkmp.p);
  128. if (nkmp->common.features & CCU_FEATURE_FIXED_POSTDIV)
  129. rate = rate / nkmp->fixed_post_div;
  130. return rate;
  131. }
  132. static int ccu_nkmp_set_rate(struct clk_hw *hw, unsigned long rate,
  133. unsigned long parent_rate)
  134. {
  135. struct ccu_nkmp *nkmp = hw_to_ccu_nkmp(hw);
  136. u32 n_mask, k_mask, m_mask, p_mask;
  137. struct _ccu_nkmp _nkmp;
  138. unsigned long flags;
  139. u32 reg;
  140. if (nkmp->common.features & CCU_FEATURE_FIXED_POSTDIV)
  141. rate = rate * nkmp->fixed_post_div;
  142. _nkmp.min_n = nkmp->n.min ?: 1;
  143. _nkmp.max_n = nkmp->n.max ?: 1 << nkmp->n.width;
  144. _nkmp.min_k = nkmp->k.min ?: 1;
  145. _nkmp.max_k = nkmp->k.max ?: 1 << nkmp->k.width;
  146. _nkmp.min_m = 1;
  147. _nkmp.max_m = nkmp->m.max ?: 1 << nkmp->m.width;
  148. _nkmp.min_p = 1;
  149. _nkmp.max_p = nkmp->p.max ?: 1 << ((1 << nkmp->p.width) - 1);
  150. ccu_nkmp_find_best(parent_rate, rate, &_nkmp);
  151. n_mask = GENMASK(nkmp->n.width + nkmp->n.shift - 1, nkmp->n.shift);
  152. k_mask = GENMASK(nkmp->k.width + nkmp->k.shift - 1, nkmp->k.shift);
  153. m_mask = GENMASK(nkmp->m.width + nkmp->m.shift - 1, nkmp->m.shift);
  154. p_mask = GENMASK(nkmp->p.width + nkmp->p.shift - 1, nkmp->p.shift);
  155. spin_lock_irqsave(nkmp->common.lock, flags);
  156. reg = readl(nkmp->common.base + nkmp->common.reg);
  157. reg &= ~(n_mask | k_mask | m_mask | p_mask);
  158. reg |= ((_nkmp.n - nkmp->n.offset) << nkmp->n.shift) & n_mask;
  159. reg |= ((_nkmp.k - nkmp->k.offset) << nkmp->k.shift) & k_mask;
  160. reg |= ((_nkmp.m - nkmp->m.offset) << nkmp->m.shift) & m_mask;
  161. reg |= (ilog2(_nkmp.p) << nkmp->p.shift) & p_mask;
  162. writel(reg, nkmp->common.base + nkmp->common.reg);
  163. spin_unlock_irqrestore(nkmp->common.lock, flags);
  164. ccu_helper_wait_for_lock(&nkmp->common, nkmp->lock);
  165. return 0;
  166. }
  167. const struct clk_ops ccu_nkmp_ops = {
  168. .disable = ccu_nkmp_disable,
  169. .enable = ccu_nkmp_enable,
  170. .is_enabled = ccu_nkmp_is_enabled,
  171. .recalc_rate = ccu_nkmp_recalc_rate,
  172. .round_rate = ccu_nkmp_round_rate,
  173. .set_rate = ccu_nkmp_set_rate,
  174. };