Commit 5f1a5fee authored by Jolly Shah's avatar Jolly Shah
Browse files

zynqmp: pm: Implement PLL set mode EEMI API



This API will be used to set the PLL mode: reset (unlocked), integer
or fractional (locked). If reset mode is set the PM controller will
bypass the target PLL prior to asserting the reset. If integer or
fractional mode is set the PM controller will program and trigger
locking of the PLL. If success status is returned the PLL is locked
and its bypass is deasserted. If fractional mode is set the fractional
divider (data parameter) has to have a non-zero value prior to issuing
pll set fractional mode. The caller need to ensure that the data
parameter is properly set using pll get/set parameter EEMI API.
Signed-off-by: default avatarMirela Simonovic <mirela.simonovic@aggios.com>
Acked-by: default avatarWill Wong <WILLW@xilinx.com>
Signed-off-by: default avatarJolly Shah <jollys@xilinx.com>
parent d833f64c
...@@ -1296,3 +1296,33 @@ enum pm_ret_status pm_pll_get_parameter(enum pm_node_id nid, ...@@ -1296,3 +1296,33 @@ enum pm_ret_status pm_pll_get_parameter(enum pm_node_id nid,
PM_PACK_PAYLOAD3(payload, PM_PLL_GET_PARAMETER, nid, param_id); PM_PACK_PAYLOAD3(payload, PM_PLL_GET_PARAMETER, nid, param_id);
return pm_ipi_send_sync(primary_proc, payload, value, 1); return pm_ipi_send_sync(primary_proc, payload, value, 1);
} }
/**
* pm_pll_set_mode() - Set the PLL mode
* @nid Node id of the target PLL
* @mode PLL mode to be set
*
* If reset mode is set the PM controller will first bypass the PLL and then
* assert the reset. If integer or fractional mode is set the PM controller will
* ensure that the complete PLL programming sequence is satisfied. After this
* function returns success the PLL is locked and its bypass is deasserted.
*
* @return Error if an argument is not valid or status as returned by the
* PM controller (PMU)
*/
enum pm_ret_status pm_pll_set_mode(enum pm_node_id nid, enum pm_pll_mode mode)
{
uint32_t payload[PAYLOAD_ARG_CNT];
/* Check if given node ID is a PLL node */
if (nid < NODE_APLL || nid > NODE_IOPLL)
return PM_RET_ERROR_ARGS;
/* Check if PLL mode is valid */
if (mode >= PM_PLL_MODE_MAX)
return PM_RET_ERROR_ARGS;
/* Send request to the PMU */
PM_PACK_PAYLOAD3(payload, PM_PLL_SET_MODE, nid, mode);
return pm_ipi_send_sync(primary_proc, payload, NULL, 0);
}
...@@ -184,4 +184,6 @@ enum pm_ret_status pm_pll_get_parameter(enum pm_node_id nid, ...@@ -184,4 +184,6 @@ enum pm_ret_status pm_pll_get_parameter(enum pm_node_id nid,
enum pm_pll_param param_id, enum pm_pll_param param_id,
unsigned int *value); unsigned int *value);
enum pm_ret_status pm_pll_set_mode(enum pm_node_id nid, enum pm_pll_mode mode);
#endif /* PM_API_SYS_H */ #endif /* PM_API_SYS_H */
...@@ -95,6 +95,7 @@ enum pm_api_id { ...@@ -95,6 +95,7 @@ enum pm_api_id {
/* PLL control API functions */ /* PLL control API functions */
PM_PLL_SET_PARAMETER, PM_PLL_SET_PARAMETER,
PM_PLL_GET_PARAMETER, PM_PLL_GET_PARAMETER,
PM_PLL_SET_MODE,
PM_API_MAX PM_API_MAX
}; };
...@@ -294,5 +295,16 @@ enum pm_pll_param { ...@@ -294,5 +295,16 @@ enum pm_pll_param {
PM_PLL_PARAM_MAX, PM_PLL_PARAM_MAX,
}; };
/**
* @PM_PLL_MODE_RESET: PLL is in reset (not locked)
* @PM_PLL_MODE_INTEGER: PLL is locked in integer mode
* @PM_PLL_MODE_FRACTIONAL: PLL is locked in fractional mode
*/
enum pm_pll_mode {
PM_PLL_MODE_RESET,
PM_PLL_MODE_INTEGER,
PM_PLL_MODE_FRACTIONAL,
PM_PLL_MODE_MAX,
};
#endif /* PM_DEFS_H */ #endif /* PM_DEFS_H */
...@@ -575,6 +575,10 @@ uint64_t pm_smc_handler(uint32_t smc_fid, uint64_t x1, uint64_t x2, uint64_t x3, ...@@ -575,6 +575,10 @@ uint64_t pm_smc_handler(uint32_t smc_fid, uint64_t x1, uint64_t x2, uint64_t x3,
SMC_RET1(handle, (uint64_t)ret | ((uint64_t)value << 32)); SMC_RET1(handle, (uint64_t)ret | ((uint64_t)value << 32));
} }
case PM_PLL_SET_MODE:
ret = pm_pll_set_mode(pm_arg[0], pm_arg[1]);
SMC_RET1(handle, (uint64_t)ret);
default: default:
WARN("Unimplemented PM Service Call: 0x%x\n", smc_fid); WARN("Unimplemented PM Service Call: 0x%x\n", smc_fid);
SMC_RET1(handle, SMC_UNK); SMC_RET1(handle, SMC_UNK);
......
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