i40e_hmc.h 8.1 KB

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  1. /* SPDX-License-Identifier: GPL-2.0 */
  2. /*******************************************************************************
  3. *
  4. * Intel Ethernet Controller XL710 Family Linux Virtual Function Driver
  5. * Copyright(c) 2013 - 2014 Intel Corporation.
  6. *
  7. * This program is free software; you can redistribute it and/or modify it
  8. * under the terms and conditions of the GNU General Public License,
  9. * version 2, as published by the Free Software Foundation.
  10. *
  11. * This program is distributed in the hope it will be useful, but WITHOUT
  12. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  13. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  14. * more details.
  15. *
  16. * You should have received a copy of the GNU General Public License along
  17. * with this program. If not, see <http://www.gnu.org/licenses/>.
  18. *
  19. * The full GNU General Public License is included in this distribution in
  20. * the file called "COPYING".
  21. *
  22. * Contact Information:
  23. * e1000-devel Mailing List <e1000-devel@lists.sourceforge.net>
  24. * Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497
  25. *
  26. ******************************************************************************/
  27. #ifndef _I40E_HMC_H_
  28. #define _I40E_HMC_H_
  29. #define I40E_HMC_MAX_BP_COUNT 512
  30. /* forward-declare the HW struct for the compiler */
  31. struct i40e_hw;
  32. #define I40E_HMC_INFO_SIGNATURE 0x484D5347 /* HMSG */
  33. #define I40E_HMC_PD_CNT_IN_SD 512
  34. #define I40E_HMC_DIRECT_BP_SIZE 0x200000 /* 2M */
  35. #define I40E_HMC_PAGED_BP_SIZE 4096
  36. #define I40E_HMC_PD_BP_BUF_ALIGNMENT 4096
  37. #define I40E_FIRST_VF_FPM_ID 16
  38. struct i40e_hmc_obj_info {
  39. u64 base; /* base addr in FPM */
  40. u32 max_cnt; /* max count available for this hmc func */
  41. u32 cnt; /* count of objects driver actually wants to create */
  42. u64 size; /* size in bytes of one object */
  43. };
  44. enum i40e_sd_entry_type {
  45. I40E_SD_TYPE_INVALID = 0,
  46. I40E_SD_TYPE_PAGED = 1,
  47. I40E_SD_TYPE_DIRECT = 2
  48. };
  49. struct i40e_hmc_bp {
  50. enum i40e_sd_entry_type entry_type;
  51. struct i40e_dma_mem addr; /* populate to be used by hw */
  52. u32 sd_pd_index;
  53. u32 ref_cnt;
  54. };
  55. struct i40e_hmc_pd_entry {
  56. struct i40e_hmc_bp bp;
  57. u32 sd_index;
  58. bool rsrc_pg;
  59. bool valid;
  60. };
  61. struct i40e_hmc_pd_table {
  62. struct i40e_dma_mem pd_page_addr; /* populate to be used by hw */
  63. struct i40e_hmc_pd_entry *pd_entry; /* [512] for sw book keeping */
  64. struct i40e_virt_mem pd_entry_virt_mem; /* virt mem for pd_entry */
  65. u32 ref_cnt;
  66. u32 sd_index;
  67. };
  68. struct i40e_hmc_sd_entry {
  69. enum i40e_sd_entry_type entry_type;
  70. bool valid;
  71. union {
  72. struct i40e_hmc_pd_table pd_table;
  73. struct i40e_hmc_bp bp;
  74. } u;
  75. };
  76. struct i40e_hmc_sd_table {
  77. struct i40e_virt_mem addr; /* used to track sd_entry allocations */
  78. u32 sd_cnt;
  79. u32 ref_cnt;
  80. struct i40e_hmc_sd_entry *sd_entry; /* (sd_cnt*512) entries max */
  81. };
  82. struct i40e_hmc_info {
  83. u32 signature;
  84. /* equals to pci func num for PF and dynamically allocated for VFs */
  85. u8 hmc_fn_id;
  86. u16 first_sd_index; /* index of the first available SD */
  87. /* hmc objects */
  88. struct i40e_hmc_obj_info *hmc_obj;
  89. struct i40e_virt_mem hmc_obj_virt_mem;
  90. struct i40e_hmc_sd_table sd_table;
  91. };
  92. #define I40E_INC_SD_REFCNT(sd_table) ((sd_table)->ref_cnt++)
  93. #define I40E_INC_PD_REFCNT(pd_table) ((pd_table)->ref_cnt++)
  94. #define I40E_INC_BP_REFCNT(bp) ((bp)->ref_cnt++)
  95. #define I40E_DEC_SD_REFCNT(sd_table) ((sd_table)->ref_cnt--)
  96. #define I40E_DEC_PD_REFCNT(pd_table) ((pd_table)->ref_cnt--)
  97. #define I40E_DEC_BP_REFCNT(bp) ((bp)->ref_cnt--)
  98. /**
  99. * I40E_SET_PF_SD_ENTRY - marks the sd entry as valid in the hardware
  100. * @hw: pointer to our hw struct
  101. * @pa: pointer to physical address
  102. * @sd_index: segment descriptor index
  103. * @type: if sd entry is direct or paged
  104. **/
  105. #define I40E_SET_PF_SD_ENTRY(hw, pa, sd_index, type) \
  106. { \
  107. u32 val1, val2, val3; \
  108. val1 = (u32)(upper_32_bits(pa)); \
  109. val2 = (u32)(pa) | (I40E_HMC_MAX_BP_COUNT << \
  110. I40E_PFHMC_SDDATALOW_PMSDBPCOUNT_SHIFT) | \
  111. ((((type) == I40E_SD_TYPE_PAGED) ? 0 : 1) << \
  112. I40E_PFHMC_SDDATALOW_PMSDTYPE_SHIFT) | \
  113. BIT(I40E_PFHMC_SDDATALOW_PMSDVALID_SHIFT); \
  114. val3 = (sd_index) | BIT_ULL(I40E_PFHMC_SDCMD_PMSDWR_SHIFT); \
  115. wr32((hw), I40E_PFHMC_SDDATAHIGH, val1); \
  116. wr32((hw), I40E_PFHMC_SDDATALOW, val2); \
  117. wr32((hw), I40E_PFHMC_SDCMD, val3); \
  118. }
  119. /**
  120. * I40E_CLEAR_PF_SD_ENTRY - marks the sd entry as invalid in the hardware
  121. * @hw: pointer to our hw struct
  122. * @sd_index: segment descriptor index
  123. * @type: if sd entry is direct or paged
  124. **/
  125. #define I40E_CLEAR_PF_SD_ENTRY(hw, sd_index, type) \
  126. { \
  127. u32 val2, val3; \
  128. val2 = (I40E_HMC_MAX_BP_COUNT << \
  129. I40E_PFHMC_SDDATALOW_PMSDBPCOUNT_SHIFT) | \
  130. ((((type) == I40E_SD_TYPE_PAGED) ? 0 : 1) << \
  131. I40E_PFHMC_SDDATALOW_PMSDTYPE_SHIFT); \
  132. val3 = (sd_index) | BIT_ULL(I40E_PFHMC_SDCMD_PMSDWR_SHIFT); \
  133. wr32((hw), I40E_PFHMC_SDDATAHIGH, 0); \
  134. wr32((hw), I40E_PFHMC_SDDATALOW, val2); \
  135. wr32((hw), I40E_PFHMC_SDCMD, val3); \
  136. }
  137. /**
  138. * I40E_INVALIDATE_PF_HMC_PD - Invalidates the pd cache in the hardware
  139. * @hw: pointer to our hw struct
  140. * @sd_idx: segment descriptor index
  141. * @pd_idx: page descriptor index
  142. **/
  143. #define I40E_INVALIDATE_PF_HMC_PD(hw, sd_idx, pd_idx) \
  144. wr32((hw), I40E_PFHMC_PDINV, \
  145. (((sd_idx) << I40E_PFHMC_PDINV_PMSDIDX_SHIFT) | \
  146. ((pd_idx) << I40E_PFHMC_PDINV_PMPDIDX_SHIFT)))
  147. /**
  148. * I40E_FIND_SD_INDEX_LIMIT - finds segment descriptor index limit
  149. * @hmc_info: pointer to the HMC configuration information structure
  150. * @type: type of HMC resources we're searching
  151. * @index: starting index for the object
  152. * @cnt: number of objects we're trying to create
  153. * @sd_idx: pointer to return index of the segment descriptor in question
  154. * @sd_limit: pointer to return the maximum number of segment descriptors
  155. *
  156. * This function calculates the segment descriptor index and index limit
  157. * for the resource defined by i40e_hmc_rsrc_type.
  158. **/
  159. #define I40E_FIND_SD_INDEX_LIMIT(hmc_info, type, index, cnt, sd_idx, sd_limit)\
  160. { \
  161. u64 fpm_addr, fpm_limit; \
  162. fpm_addr = (hmc_info)->hmc_obj[(type)].base + \
  163. (hmc_info)->hmc_obj[(type)].size * (index); \
  164. fpm_limit = fpm_addr + (hmc_info)->hmc_obj[(type)].size * (cnt);\
  165. *(sd_idx) = (u32)(fpm_addr / I40E_HMC_DIRECT_BP_SIZE); \
  166. *(sd_limit) = (u32)((fpm_limit - 1) / I40E_HMC_DIRECT_BP_SIZE); \
  167. /* add one more to the limit to correct our range */ \
  168. *(sd_limit) += 1; \
  169. }
  170. /**
  171. * I40E_FIND_PD_INDEX_LIMIT - finds page descriptor index limit
  172. * @hmc_info: pointer to the HMC configuration information struct
  173. * @type: HMC resource type we're examining
  174. * @idx: starting index for the object
  175. * @cnt: number of objects we're trying to create
  176. * @pd_index: pointer to return page descriptor index
  177. * @pd_limit: pointer to return page descriptor index limit
  178. *
  179. * Calculates the page descriptor index and index limit for the resource
  180. * defined by i40e_hmc_rsrc_type.
  181. **/
  182. #define I40E_FIND_PD_INDEX_LIMIT(hmc_info, type, idx, cnt, pd_index, pd_limit)\
  183. { \
  184. u64 fpm_adr, fpm_limit; \
  185. fpm_adr = (hmc_info)->hmc_obj[(type)].base + \
  186. (hmc_info)->hmc_obj[(type)].size * (idx); \
  187. fpm_limit = fpm_adr + (hmc_info)->hmc_obj[(type)].size * (cnt); \
  188. *(pd_index) = (u32)(fpm_adr / I40E_HMC_PAGED_BP_SIZE); \
  189. *(pd_limit) = (u32)((fpm_limit - 1) / I40E_HMC_PAGED_BP_SIZE); \
  190. /* add one more to the limit to correct our range */ \
  191. *(pd_limit) += 1; \
  192. }
  193. i40e_status i40e_add_sd_table_entry(struct i40e_hw *hw,
  194. struct i40e_hmc_info *hmc_info,
  195. u32 sd_index,
  196. enum i40e_sd_entry_type type,
  197. u64 direct_mode_sz);
  198. i40e_status i40e_add_pd_table_entry(struct i40e_hw *hw,
  199. struct i40e_hmc_info *hmc_info,
  200. u32 pd_index,
  201. struct i40e_dma_mem *rsrc_pg);
  202. i40e_status i40e_remove_pd_bp(struct i40e_hw *hw,
  203. struct i40e_hmc_info *hmc_info,
  204. u32 idx);
  205. i40e_status i40e_prep_remove_sd_bp(struct i40e_hmc_info *hmc_info,
  206. u32 idx);
  207. i40e_status i40e_remove_sd_bp_new(struct i40e_hw *hw,
  208. struct i40e_hmc_info *hmc_info,
  209. u32 idx, bool is_pf);
  210. i40e_status i40e_prep_remove_pd_page(struct i40e_hmc_info *hmc_info,
  211. u32 idx);
  212. i40e_status i40e_remove_pd_page_new(struct i40e_hw *hw,
  213. struct i40e_hmc_info *hmc_info,
  214. u32 idx, bool is_pf);
  215. #endif /* _I40E_HMC_H_ */