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ASoC: Intel: avs: Dynamic firmware resources management
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Wrap elementary DSP-core operations and resource control into more
complex handlers. This is done to reduce the number of invocations of
wrapped operations throughout the driver as order of operations matters -
most flows involve register manipulation and IPCs combined.

Signed-off-by: Amadeusz Sławiński <[email protected]>
Signed-off-by: Cezary Rojewski <[email protected]>
Link: https://lore.kernel.org/r/[email protected]
Signed-off-by: Mark Brown <[email protected]>
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crojewsk-intel authored and broonie committed Mar 11, 2022
1 parent 580a591 commit 215e67b
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10 changes: 10 additions & 0 deletions sound/soc/intel/avs/avs.h
Original file line number Diff line number Diff line change
Expand Up @@ -89,6 +89,7 @@ struct avs_dev {
struct mutex modres_mutex;
struct ida ppl_ida;
struct list_head fw_list;
int *core_refs; /* reference count per core */

struct completion fw_ready;
};
Expand Down Expand Up @@ -205,4 +206,13 @@ int avs_request_firmware(struct avs_dev *adev, const struct firmware **fw_p, con
void avs_release_last_firmware(struct avs_dev *adev);
void avs_release_firmwares(struct avs_dev *adev);

int avs_dsp_init_module(struct avs_dev *adev, u16 module_id, u8 ppl_instance_id,
u8 core_id, u8 domain, void *param, u32 param_size,
u16 *instance_id);
void avs_dsp_delete_module(struct avs_dev *adev, u16 module_id, u16 instance_id,
u8 ppl_instance_id, u8 core_id);
int avs_dsp_create_pipeline(struct avs_dev *adev, u16 req_size, u8 priority,
bool lp, u16 attributes, u8 *instance_id);
int avs_dsp_delete_pipeline(struct avs_dev *adev, u8 instance_id);

#endif /* __SOUND_SOC_INTEL_AVS_H */
169 changes: 169 additions & 0 deletions sound/soc/intel/avs/dsp.c
Original file line number Diff line number Diff line change
Expand Up @@ -104,4 +104,173 @@ int avs_dsp_core_disable(struct avs_dev *adev, u32 core_mask)
return avs_dsp_op(adev, power, core_mask, false);
}

static int avs_dsp_enable(struct avs_dev *adev, u32 core_mask)
{
u32 mask;
int ret;

ret = avs_dsp_core_enable(adev, core_mask);
if (ret < 0)
return ret;

mask = core_mask & ~AVS_MAIN_CORE_MASK;
if (!mask)
/*
* without main core, fw is dead anyway
* so setting D0 for it is futile.
*/
return 0;

ret = avs_ipc_set_dx(adev, mask, true);
return AVS_IPC_RET(ret);
}

static int avs_dsp_disable(struct avs_dev *adev, u32 core_mask)
{
int ret;

ret = avs_ipc_set_dx(adev, core_mask, false);
if (ret)
return AVS_IPC_RET(ret);

return avs_dsp_core_disable(adev, core_mask);
}

static int avs_dsp_get_core(struct avs_dev *adev, u32 core_id)
{
u32 mask;
int ret;

mask = BIT_MASK(core_id);
if (mask == AVS_MAIN_CORE_MASK)
/* nothing to do for main core */
return 0;
if (core_id >= adev->hw_cfg.dsp_cores) {
ret = -EINVAL;
goto err;
}

adev->core_refs[core_id]++;
if (adev->core_refs[core_id] == 1) {
ret = avs_dsp_enable(adev, mask);
if (ret)
goto err_enable_dsp;
}

return 0;

err_enable_dsp:
adev->core_refs[core_id]--;
err:
dev_err(adev->dev, "get core %d failed: %d\n", core_id, ret);
return ret;
}

static int avs_dsp_put_core(struct avs_dev *adev, u32 core_id)
{
u32 mask;
int ret;

mask = BIT_MASK(core_id);
if (mask == AVS_MAIN_CORE_MASK)
/* nothing to do for main core */
return 0;
if (core_id >= adev->hw_cfg.dsp_cores) {
ret = -EINVAL;
goto err;
}

adev->core_refs[core_id]--;
if (!adev->core_refs[core_id]) {
ret = avs_dsp_disable(adev, mask);
if (ret)
goto err;
}

return 0;
err:
dev_err(adev->dev, "put core %d failed: %d\n", core_id, ret);
return ret;
}

int avs_dsp_init_module(struct avs_dev *adev, u16 module_id, u8 ppl_instance_id,
u8 core_id, u8 domain, void *param, u32 param_size,
u16 *instance_id)
{
struct avs_module_entry mentry;
int ret, id;

id = avs_module_id_alloc(adev, module_id);
if (id < 0)
return id;

ret = avs_get_module_id_entry(adev, module_id, &mentry);
if (ret)
goto err_mod_entry;

ret = avs_dsp_get_core(adev, core_id);
if (ret)
goto err_mod_entry;

ret = avs_ipc_init_instance(adev, module_id, id, ppl_instance_id,
core_id, domain, param, param_size);
if (ret) {
ret = AVS_IPC_RET(ret);
goto err_ipc;
}

*instance_id = id;
return 0;

err_ipc:
avs_dsp_put_core(adev, core_id);
err_mod_entry:
avs_module_id_free(adev, module_id, id);
return ret;
}

void avs_dsp_delete_module(struct avs_dev *adev, u16 module_id, u16 instance_id,
u8 ppl_instance_id, u8 core_id)
{
/* Modules not owned by any pipeline need to be freed explicitly. */
if (ppl_instance_id == INVALID_PIPELINE_ID)
avs_ipc_delete_instance(adev, module_id, instance_id);

avs_module_id_free(adev, module_id, instance_id);

avs_dsp_put_core(adev, core_id);
}

int avs_dsp_create_pipeline(struct avs_dev *adev, u16 req_size, u8 priority,
bool lp, u16 attributes, u8 *instance_id)
{
struct avs_fw_cfg *fw_cfg = &adev->fw_cfg;
int ret, id;

id = ida_alloc_max(&adev->ppl_ida, fw_cfg->max_ppl_count - 1, GFP_KERNEL);
if (id < 0)
return id;

ret = avs_ipc_create_pipeline(adev, req_size, priority, id, lp, attributes);
if (ret) {
ida_free(&adev->ppl_ida, id);
return AVS_IPC_RET(ret);
}

*instance_id = id;
return 0;
}

int avs_dsp_delete_pipeline(struct avs_dev *adev, u8 instance_id)
{
int ret;

ret = avs_ipc_delete_pipeline(adev, instance_id);
if (ret)
ret = AVS_IPC_RET(ret);

ida_free(&adev->ppl_ida, instance_id);
return ret;
}

MODULE_LICENSE("GPL");

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